First step in reorganizing the installation of the musrfit documentation (further commits will follow)

This commit is contained in:
Bastian M. Wojek
2011-08-06 09:51:21 +00:00
parent 4490f103f3
commit 254d849079
241 changed files with 39 additions and 18 deletions

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sample XYZ
###############################################################
FITPARAMETER
# No Name Value Step Pos_Error Boundaries
1 NormUp 4500 5 none 0 none
2 BgUp 200 1 none 0 none
3 PhaseUp 15 1 none
4 NormDown 4500 5 none 0 none
5 BgDown 200 1 none 0 none
6 PhaseDown 195 1 none
7 NormRight 600 5 none 0 none
8 BgRight 40 1 none 0 none
9 PhaseRight 285 1 none
10 AsymSig1 0.17 0.01 none 0 0.33
11 RateSig1 2.5 0.1 none 0 none
12 FieldSig1 100 1 none
13 AsymSig2 0.02 0.01 none 0 0.33
14 RateSig2 0.5 0.1 none
15 FieldSig2 150 1 none
###############################################################
THEORY
asymmetry 10
simplExpo 11 (rate)
TFieldCos map1 fun1 (phase frequency)
+
asymmetry 13
simpleGss 14 (rate)
TFieldCos map1 fun2 (phase frequency)
###############################################################
FUNCTIONS
fun1 = gamma_mu * par12
fun2 = gamma_mu * par15
###############################################################
RUN data/deltat_pta_gps_3110 PIM3 PSI PSI-BIN (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 1
backgr.fit 2
lifetimecorrection
map 3 0 0 0 0 0 0 0 0 0
forward 3
data 1 8000
t0 1
fit 0 4.9
packing 20
RUN data/deltat_pta_gps_3110 PIM3 PSI PSI-BIN (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 4
backgr.fit 5
lifetimecorrection
map 6 0 0 0 0 0 0 0 0 0
forward 4
data 1 7999
t0 1
fit 0 4.9
packing 20
RUN data/deltat_pta_gps_3110 PIM3 PSI PSI-BIN (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 7
backgr.fit 8
#lifetimecorrection
map 9 0 0 0 0 0 0 0 0 0
forward 5
data 1 8003
t0 1
fit 0 4.9
packing 20
###############################################################
COMMANDS
MINIMIZE
MINOS
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 10
apodization WEAK # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase par3
range 0.0 600.0
###############################################################
PLOT 0 (single histo plot)
runs 1 2
range 0 4 -0.2 0.2
PLOT 0 (single histo plot)
runs 3
use_fit_ranges
###############################################################
STATISTIC --- 2011-07-09 10:58:44
chisq = 1348.1764586409397, NDF = 1146, chisq/NDF = 1.1764192483777833

Binary file not shown.

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<?xml version="1.0" encoding="UTF-8"?>
<nonlocal xmlns="http://nemu.web.psi.ch/musrfit/nonlocal">
<comment>
$Id: nonlocal_startup.xml 4047 2009-07-02 13:36:18Z nemu $
</comment>
<nonlocal_par>
<fourier_points>262144</fourier_points>
</nonlocal_par>
<trim_sp_part>
<data_path>profiles/Sn_E</data_path>
<energy_list>
<energy>1000</energy>
<energy>2000</energy>
<energy>4000</energy>
<energy>6000</energy>
<energy>8000</energy>
<energy>10000</energy>
<energy>12000</energy>
<energy>14100</energy>
<energy>18000</energy>
<energy>22000</energy>
<energy>25000</energy>
<energy>27300</energy>
</energy_list>
</trim_sp_part>
</nonlocal>

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Sn-210042 B=~48(G)/1.50(A), T=3.31(K), Tr=18.02(kV), Sa=-4.70(kV), En=21.97(keV), RAL-RAR=0.09(kV), RAT-RAB=0.15(kV)
###############################################################
FITPARAMETER
# Nr. Name Value Step Pos_Error Boundaries
1 one 1 0 none
2 zero 0 0 none
3 Asy 0.2079 0.0066 none 0 0.33
4 energy 22 0 none
5 redTemp 0.8683 0 none
6 thickness 5000 0 none
7 ell 12000 0 none
8 xi 94 0 none
9 lambdaL 46.0 1.2 none
10 Bext 47.11 0 none
11 deadLayer 20.730 0.051 none 0 none
12 RateSmear 0.327 0.022 none
13 N0_L 298.0 1.3 none
14 Bkg_L 24.58 0.12 none
15 Phase_L 31.2 2.7 none
16 Alpha_LR 1.0815 0.0076 none
17 Bkg_R 27.56 0.12 none
18 RelPhase_R 152.7 1.6 none
###############################################################
THEORY
asymmetry 3
userFcn libPNL_PippardFitter PNL_PippardFitter 4 5 6 7 8 9 10 fun2 11
simpleGss 12 (rate)
###############################################################
FUNCTIONS
fun1 = par13 * map1
fun2 = par15 + map2
###############################################################
RUN data/lem10_his_0825 MUE4 PSI ROOT-NPP (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 13
backgr.fit 14
lifetimecorrection
map 1 2 0 0 0 0 0 0 0 0
forward 1
data 3289 65000
t0 3289
fit 0.2 9.2
packing 250
RUN data/lem10_his_0825 MUE4 PSI ROOT-NPP (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm fun1
backgr.fit 17
lifetimecorrection
map 16 18 0 0 0 0 0 0 0 0
forward 3
data 3289 65000
t0 3289
fit 0.2 9.2
packing 250
###############################################################
COMMANDS
MINIMIZE
HESSE
SAVE
###############################################################
PLOT 0 (single histo plot)
runs 1 2
range 0 9 -0.3 0.3
view_packing 500
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 10
apodization STRONG # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase 8.5
#range_for_phase_correction 50.0 70.0
range 0.0 200.0
###############################################################
STATISTIC --- 2011-02-07 13:00:38
chisq = 417.37802304466283, NDF = 358, chisq/NDF = 1.1658603995660972

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<?xml version="1.0" encoding="UTF-8"?>
<BMW>
<comment>
BMW_startup.xml
Here some external parameters used in conjunction with the BMWlibs are set.
There are different sections:
* Common parameters which are used for any kind of function
* Parameters for low energy uSR data analysis with given B(z)
* Parameters for bulk uSR data analysis (currently only four model to calculate field distributions for a triangular vortex lattice)
* Parameters for dynamical LF relaxation functions within the BMWlibs (mainly useful for testing purposes)
Common parameters:
- debug : set it to 1 in order to obtain some information what is read from the xml-file
- wisdom : sets the path to an FFTW-wisdom file - if there is no valid wisdom at the given path, wisdom handling will be disabled
- wisdom_float : sets the path to a float-FFTW-wisdom file - if there is no valid wisdom at the given path, wisdom handling will be disabled
(at the moment only used for LF-relaxation functions)
- delta_t : time resolution of P(t) in microseconds
- delta_B : field resolution of P(B) in Gauss
LF-relaxation parameters:
- delta_t_LF : time resolution of P(t) in microseconds for the Laplace transforms involved in the dynamical LF-relaxation calculations
- N_LF : length of the Laplace transforms involved in the dynamical LF-relaxation calculations
LEM parameters (if the LEM tag is present it is expected that the data_path tag contains a valid path):
- data_path, energy_list : Defines path/prefix, energy-labels and energies (keV) of TrimSP-rge-files
The expected file-names are then: data_path + energy_label + .rge
- N_theory : determines the number of points in "real space" where the theory function B(z) will be calculated (if necessary)
bulk parameters:
- N_VortexGrid : determines the number of points used for the calculation of the vortex lattice field distribution (the grid will be N*N)
</comment>
<debug>0</debug>
<wisdom>none</wisdom>
<wisdom_float>none</wisdom_float>
<delta_t>0.01</delta_t>
<delta_B>0.5</delta_B>
<VortexLattice>
<N_VortexGrid>512</N_VortexGrid>
</VortexLattice>
<LFRelaxation>
<delta_t_LF>0.00004</delta_t_LF>
<N_LF>524288</N_LF>
</LFRelaxation>
<LEM>
<data_path>profiles/TestProfile-</data_path>
<N_theory>5000</N_theory>
<energy_list>
<energy_label>02_0</energy_label>
<energy>2.0</energy>
<energy_label>05_0</energy_label>
<energy>5.0</energy>
<energy_label>07_5</energy_label>
<energy>7.5</energy>
<energy_label>10_0</energy_label>
<energy>10.0</energy>
<energy_label>12_0</energy_label>
<energy>12.0</energy>
<energy_label>16_0</energy_label>
<energy>16.0</energy>
<energy_label>18_0</energy_label>
<energy>18.0</energy>
<energy_label>20_0</energy_label>
<energy>20.0</energy>
<energy_label>22_0</energy_label>
<energy>22.0</energy>
<energy_label>24_0</energy_label>
<energy>24.0</energy>
</energy_list>
</LEM>
</BMW>

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@ -0,0 +1,256 @@
TITLE
Superconducting thin film in the Meissner state (SIMULATION)
Abstract
Superconducting thin film in the Meissner state (SIMULATION)
Thickness: 160 nm
Lambda: 300 nm
LABELS
T (K)
mu0 H (G)
Implantation Energy (keV)
Transport (kV)
phase (deg)
Average Field (G)
asymS
rateS (#mus^{-1})
asymF
rateF (#mus^{-1})
Norm_L
BG_L
Norm_R
BG_R
relasy_R
relphase_R (deg)
one
zero
CHISQ
NDF
CHISQred
RUN
Data dataT dataB dataE dataTr phase field asymS rateS asymF rateF Norm_L BG_L Norm_R BG_R relasy_R relphase_R one zero CHISQ NDF CHISQred RUN
\-e
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 2, 0, 0,\
dataTr = -999, 0, 0,\
phase = 19.9911, 0.548322, 0.547954,\
field = 94.3346, 0.04165, 0.0416162,\
asymS = 0.209439, 0.00168323, 0.00168092,\
rateS = 0.0492202, 0.0106281, 0.0133727,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 511.948, 0.680274, 0.680392,\
BG_L = 40.9481, 0.114178, 0.114157,\
Norm_R = 460.477, 0.637507, 0.637296,\
BG_R = 35.8433, 0.107165, 0.107198,\
relasy_R = 0.981156, 0.0108653, 0.0107525,\
relphase_R = 165.07, 0.614994, 0.615488,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 525.76, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 1.06, 0, 0,\
10,,, FakeData 10
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 5, 0, 0,\
dataTr = -999, 0, 0,\
phase = 18.9719, 0.547842, 0.547336,\
field = 93.6519, 0.041079, 0.0410703,\
asymS = 0.20767, 0.00168415, 0.00168011,\
rateS = 0.0459694, 0.0113175, 0.0148194,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 511.668, 0.679399, 0.681331,\
BG_L = 41.0131, 0.114346, 0.114045,\
Norm_R = 459.84, 0.637868, 0.637406,\
BG_R = 35.9844, 0.107249, 0.107452,\
relasy_R = 1.01118, 0.0111212, 0.0109868,\
relphase_R = 165.354, 0.610285, 0.610664,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 474.812, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 0.957283, 0, 0,\
11,,, 11
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 7.5, 0, 0,\
dataTr = -999, 0, 0,\
phase = 20.3537, 0.549168, 0.548612,\
field = 93.1237, 0.0418215, 0.0418009,\
asymS = 0.209176, 0.00168481, 0.00168412,\
rateS = 0.0580576, 0.00943369, 0.0110702,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 512.885, 0.681529, 0.679975,\
BG_L = 40.7945, 0.114086, 0.11403,\
Norm_R = 461.784, 0.637033, 0.63885,\
BG_R = 35.6139, 0.107146, 0.106943,\
relasy_R = 0.990985, 0.01094, 0.0108242,\
relphase_R = 164.176, 0.613588, 0.612287,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 478.898, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 0.96552, 0, 0,\
12,,, 12
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 10, 0, 0,\
dataTr = -999, 0, 0,\
phase = 20.3558, 0.548801, 0.549056,\
field = 92.7144, 0.0410011, 0.0410277,\
asymS = 0.208817, 0.00166938, 0.00167176,\
rateS = 0.0368413, 0.013199, 0.0214315,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 512.164, 0.680416, 0.680467,\
BG_L = 40.8446, 0.114026, 0.114145,\
Norm_R = 461.033, 0.637598, 0.638407,\
BG_R = 35.7621, 0.107242, 0.107176,\
relasy_R = 0.985641, 0.0109102, 0.0107434,\
relphase_R = 164.644, 0.613762, 0.612931,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 466.476, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 0.940475, 0, 0,\
13,,, 13
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 12, 0, 0,\
dataTr = -999, 0, 0,\
phase = 20.5737, 0.542625, 0.541999,\
field = 92.5039, 0.0406381, 0.0406611,\
asymS = 0.211014, 0.00167778, 0.0016758,\
rateS = 0.0362712, 0.0133201, 0.0224154,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 512.321, 0.681227, 0.680799,\
BG_L = 40.9476, 0.114168, 0.114277,\
Norm_R = 460.268, 0.637275, 0.637982,\
BG_R = 35.7985, 0.107257, 0.107136,\
relasy_R = 0.981636, 0.0107562, 0.010656,\
relphase_R = 163.856, 0.60798, 0.607855,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 548.56, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 1.10597, 0, 0,\
14,,, 14
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 16, 0, 0,\
dataTr = -999, 0, 0,\
phase = 19.648, 0.545905, 0.54508,\
field = 92.1691, 0.0399792, 0.0400377,\
asymS = 0.207245, 0.00153621, 0.00153789,\
rateS = 3.15475e-05, 0.0237503, 3.15475e-05,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 511.991, 0.678127, 0.678225,\
BG_L = 40.8879, 0.113848, 0.113782,\
Norm_R = 460.983, 0.638321, 0.638017,\
BG_R = 35.8284, 0.107281, 0.107261,\
relasy_R = 1.00903, 0.0110485, 0.0109322,\
relphase_R = 165.692, 0.607819, 0.608145,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 478.23, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 0.964172, 0, 0,\
15,,, 15
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 18, 0, 0,\
dataTr = -999, 0, 0,\
phase = 20.3825, 0.554629, 0.554213,\
field = 92.112, 0.042105, 0.0421238,\
asymS = 0.205496, 0.00168959, 0.0016866,\
rateS = 0.0587814, 0.00935583, 0.0109373,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 511.742, 0.680607, 0.680491,\
BG_L = 40.9695, 0.114144, 0.114166,\
Norm_R = 460.95, 0.637808, 0.637869,\
BG_R = 35.787, 0.107189, 0.107152,\
relasy_R = 1.01714, 0.0112975, 0.011185,\
relphase_R = 164.354, 0.616315, 0.616399,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 524.027, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 1.05651, 0, 0,\
16,,, 16
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 20, 0, 0,\
dataTr = -999, 0, 0,\
phase = 19.6406, 0.54056, 0.541186,\
field = 92.1166, 0.0399119, 0.0398919,\
asymS = 0.209561, 0.00153832, 0.00153834,\
rateS = 1.15072e-05, 0.0220403, 1.15072e-05,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 511.878, 0.679053, 0.677984,\
BG_L = 41.0016, 0.113867, 0.114042,\
Norm_R = 460.792, 0.637537, 0.63825,\
BG_R = 35.8446, 0.1073, 0.107141,\
relasy_R = 0.990195, 0.0112975, 0.0107868,\
relphase_R = 165.508, 0.607496, 0.60648,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 510.134, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 1.02849, 0, 0,\
17,,, 17
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 22, 0, 0,\
dataTr = -999, 0, 0,\
phase = 19.7588, 0.539725, 0.539232,\
field = 92.2675, 0.0405621, 0.0405519,\
asymS = 0.21133, 0.00167713, 0.00167511,\
rateS = 0.0435813, 0.0114532, 0.0154423,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 512.261, 0.680603, 0.680661,\
BG_L = 40.8804, 0.114102, 0.114102,\
Norm_R = 459.983, 0.637493, 0.63749,\
BG_R = 35.9777, 0.107233, 0.107342,\
relasy_R = 1.00198, 0.0108701, 0.010746,\
relphase_R = 164.95, 0.601843, 0.601722,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 466.595, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 0.940715, 0, 0,\
18,,, 18
dataT = -999, -999, -999,\
dataB = 95, 0, 0,\
dataE = 24, 0, 0,\
dataTr = -999, 0, 0,\
phase = 19.1697, 0.541308, 0.541008,\
field = 92.5277, 0.0414068, 0.0413834,\
asymS = 0.211852, 0.0016875, 0.00168863,\
rateS = 0.0577038, 0.00939834, 0.0110313,\
asymF = 0, 0, 0,\
rateF = 0, 0, 0,\
Norm_L = 512.697, 0.680043, 0.681802,\
BG_L = 40.8227, 0.114172, 0.11398,\
Norm_R = 459.63, 0.637738, 0.637658,\
BG_R = 36.0782, 0.107368, 0.107473,\
relasy_R = 0.98732, 0.0108046, 0.0107028,\
relphase_R = 166.397, 0.6065, 0.608263,\
one = 1, 0, 0,\
zero = 0, 0, 0,\
CHISQ = 474.932, 0, 0,\
NDF = 496, 0, 0,\
CHISQred = 0.957524, 0, 0,\
19,,, 19

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# libGapIntegrals-test.dat
# This is a comment
% This as well
header
TITLE: Test superconductor data
X-AXIS-TITLE: T (K)
Y-AXIS-TITLE: #lambda^{-2} (#mum^{-2})
SETUP: H #parallel c
FIELD: 100
TEMP: 0.0
ENERGY: 4200
# here the data will follow
data
# x, y, error y
0.02, 12.0, 0.5
0.1, 11.8, 0.8
0.2, 9.9, 0.4
0.33, 7.2, 0.15
0.41, 3.8, 0.38
0.5, 2.7, 0.5
0.64, 1.0, 0.7
0.7, 0.1, 0.2
0.8, 0.0, 0.8
0.9, 0.1, 0.5
1.2, 0.0, 0.1

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@ -0,0 +1,101 @@
DEPTH PARTICLES
2. 98
6. 309
10. 459
14. 582
18. 709
22. 780
26. 827
30. 916
34. 981
38. 1073
42. 1173
46. 1228
50. 1283
54. 1402
58. 1446
62. 1594
66. 1659
70. 1586
74. 1768
78. 1796
82. 1892
86. 1997
90. 2072
94. 2087
98. 2122
102. 2191
106. 2264
110. 2274
114. 2334
118. 2346
122. 2349
126. 2414
130. 2412
134. 2308
138. 2345
142. 2379
146. 2307
150. 2246
154. 2262
158. 2017
162. 2030
166. 1945
170. 1907
174. 1821
178. 1740
182. 1649
186. 1536
190. 1327
194. 1257
198. 1217
202. 1060
206. 941
210. 882
214. 792
218. 642
222. 585
226. 433
230. 396
234. 383
238. 284
242. 215
246. 221
250. 175
254. 123
258. 89
262. 67
266. 56
270. 48
274. 43
278. 31
282. 23
286. 18
290. 14
294. 6
298. 5
302. 3
306. 4
310. 1
314. 0
318. 0
322. 0
326. 0
330. 0
334. 0
338. 0
342. 0
346. 0
350. 0
354. 0
358. 0
362. 0
366. 0
370. 0
374. 0
378. 0
382. 0
386. 0
390. 0
394. 0
398. 0

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@ -0,0 +1,101 @@
DEPTH PARTICLES
2. 182
8. 584
12. 728
18. 982
22. 1084
28. 1185
32. 1429
38. 1475
42. 1627
48. 1721
52. 1798
58. 1962
62. 2037
68. 2271
72. 2229
78. 2408
82. 2634
88. 2757
92. 2867
98. 2893
102. 3067
108. 3281
112. 3500
118. 3574
122. 3765
128. 3940
132. 4244
138. 4304
142. 4651
148. 4636
152. 5012
158. 5264
162. 5337
168. 5677
172. 6003
178. 6112
182. 6484
188. 6535
192. 6981
198. 7118
202. 7415
208. 7812
212. 7972
218. 8162
222. 8478
228. 8914
232. 8864
238. 9238
242. 9469
248. 9683
252. 9711
258. 9893
262. 10199
268. 10321
272. 10575
278. 10582
282. 10614
288. 10444
292. 10626
298. 10572
302. 10568
308. 10343
312. 10201
318. 10019
322. 9669
328. 9471
332. 9077
338. 8624
342. 8304
348. 7758
352. 7279
358. 6744
362. 6397
368. 5689
372. 4986
378. 4565
382. 4078
388. 3488
392. 3028
398. 2589
402. 2140
408. 1723
412. 1385
418. 1028
422. 891
428. 667
432. 512
438. 363
442. 239
448. 187
452. 117
458. 76
462. 48
468. 23
472. 24
478. 11
482. 7
488. 1
492. 3
498. 2

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DEPTH PARTICLES
4. 36
10. 100
18. 129
24. 152
32. 161
38. 204
46. 246
52. 231
60. 261
66. 273
74. 296
80. 315
88. 329
94. 397
102. 383
108. 390
116. 442
122. 480
130. 469
136. 537
144. 545
150. 538
158. 639
164. 658
172. 679
178. 695
186. 772
192. 832
200. 817
206. 915
214. 926
220. 1056
228. 1093
234. 1101
242. 1187
248. 1233
256. 1252
262. 1297
270. 1426
276. 1508
284. 1565
290. 1609
298. 1656
304. 1903
312. 1904
318. 1826
326. 2005
332. 2089
340. 2266
346. 2263
354. 2292
360. 2425
368. 2414
374. 2421
382. 2442
388. 2578
396. 2600
402. 2644
410. 2483
416. 2479
424. 2469
430. 2504
438. 2398
444. 2348
452. 2208
458. 2093
466. 1936
472. 1879
480. 1625
486. 1546
494. 1342
500. 1129
508. 962
514. 836
522. 698
528. 553
536. 426
542. 292
550. 234
556. 177
564. 87
570. 68
578. 42
584. 25
592. 12
598. 6
606. 2
612. 2
620. 0
626. 1
634. 2
640. 0
648. 0
654. 0
662. 0
668. 0
676. 0
682. 0
690. 0
696. 0

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@ -0,0 +1,101 @@
DEPTH PARTICLES
4. 31
14. 80
22. 114
32. 121
40. 145
50. 167
58. 174
68. 192
76. 220
86. 232
94. 230
104. 278
112. 283
122. 317
130. 334
140. 354
148. 408
158. 369
166. 410
176. 455
184. 486
194. 505
202. 521
212. 608
220. 596
230. 641
238. 774
248. 748
256. 813
266. 837
274. 826
284. 934
292. 984
302. 1130
310. 1118
320. 1204
328. 1325
338. 1364
346. 1404
356. 1502
364. 1527
374. 1697
382. 1735
392. 1907
400. 2023
410. 2084
418. 2166
428. 2231
436. 2435
446. 2470
454. 2653
464. 2637
472. 2708
482. 2724
490. 2806
500. 3046
508. 2918
518. 2933
526. 2988
536. 2935
544. 2886
554. 2780
562. 2708
572. 2537
580. 2424
590. 2129
598. 1916
608. 1817
616. 1542
626. 1330
634. 1012
644. 806
652. 578
662. 439
670. 315
680. 186
688. 126
698. 82
706. 37
716. 9
724. 5
734. 1
742. 0
752. 0
760. 0
770. 0
778. 0
788. 0
796. 0
806. 0
814. 0
824. 0
832. 0
842. 0
850. 0
860. 0
868. 0
878. 0
886. 0
896. 0

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@ -0,0 +1,85 @@
DEPTH PARTICLES
6. 188
18. 439
30. 563
42. 673
54. 783
66. 832
78. 924
90. 1041
102. 1034
114. 1255
126. 1328
138. 1444
150. 1524
162. 1761
174. 1895
186. 2007
198. 2082
210. 2305
222. 2477
234. 2662
246. 2957
258. 3226
270. 3485
282. 3732
294. 3857
306. 4316
318. 4695
330. 4932
342. 5411
354. 5845
366. 6470
378. 6693
390. 7404
402. 7961
414. 8278
426. 8997
438. 9667
450. 10434
462. 11124
474. 11716
486. 12617
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DEPTH PARTICLES
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DEPTH PARTICLES
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DEPTH PARTICLES
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DEPTH PARTICLES
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30. 203
50. 250
70. 311
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110. 368
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@ -0,0 +1,40 @@
Test libCalcMeanFieldsLEM (SC film), DB data file
###############################################################
FITPARAMETER
# Nr. Name Value Step Pos_Error Boundaries
1 B0 95 0 none
2 deadlayer 3.71915 0.639931 none 1 10
3 SCthickness 157.461 2.37233 none 5 200
4 lambda 305.142 5.23327 none 1 none
5 weight 1 0 none 0 1
###############################################################
THEORY
userFcn libCalcMeanFieldsLEM TMeanFieldsForScSingleLayer 1 2 3 4 5 5 5
###############################################################
#FUNCTIONS
###############################################################
RUN data/Meissner-1L_160nm_TF95G_h12 MUE4 PSI DB (name beamline institute data-file-format)
fittype 8 (non muSR fit)
map 0 0 0 0 0 0 0 0 0 0
xy-data dataE field
fit 0.00 30.00
packing 1
###############################################################
COMMANDS
MINIMIZE
HESSE
#MINOS
SAVE
###############################################################
PLOT 8 (non muSR plot)
runs 1
range 0.00 30.00
###############################################################
STATISTIC --- 2010-02-23 19:51:25
chisq = 3.78008788, NDF = 7, chisq/NDF = 0.540012554

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@ -0,0 +1,90 @@
Test libTFitPofB SC Abrikosov state, single histogram plot, PSI-BIN data file
###############################################################
FITPARAMETER
# No Name Value Step Pos_Error Boundaries
1 phase 1.58223 0.000213227 none
2 field 107.087 1.21372 none
3 lambda 180.575 0.00184102 none 1 none
4 xi 4 0 none 0 10
5 asym1 0.210949 1.67583e-05 none 0 0.3
6 rate1 0.533587 0.00012763 none
7 asymBg 0 0 none 0 0.3
8 rateBg 0 0 none 0 none
9 N01 3307.96 0.000213383 none 0 none
10 bg1 69.1907 0.000213247 none 0 none
11 N02 3586.08 0.000213383 none 0 none
12 bg2 69.0577 0.000213254 none 0 none
13 relphase 182.101 0.00487066 none 150 210
14 zero 0 0 none
15 relasy 1.0211 0.000114228 none
16 one 1 0 none
###############################################################
THEORY
asymmetry fun3
simpleGss 6 (rate)
userFcn libFitPofB TBulkTriVortexML fun2 2 3 4
+
asymmetry fun4
simpleGss 8 (rate)
TFieldCos fun2 fun1 (phase frequency)
###############################################################
FUNCTIONS
fun1 = par2 * gamma_mu
fun2 = par1 + map1
fun3 = par5 * map2
fun4 = par7 * map2
###############################################################
RUN data/deltat_pta_gps_3093 PIM3 PSI PSI-BIN (name beamline institute data-file-format)
fittype 0 (single histogram fit)
map 14 16 0 0 0 0 0 0 0 0
forward 3
norm 9
lifetimecorrection
backgr.fit 10
t0 125
data 128 8001
fit 0.00 8.00
packing 30
RUN data/deltat_pta_gps_3093 PIM3 PSI PSI-BIN (name beamline institute data-file-format)
fittype 0 (single histogram fit)
map 13 15 0 0 0 0 0 0 0 0
forward 4
norm 11
lifetimecorrection
backgr.fit 12
t0 124
data 127 8000
fit 0.00 8.00
packing 30
###############################################################
COMMANDS
#MINIMIZE
MIGRAD
HESSE
#MINOS
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 9
apodization NONE # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase par1
range 0.00 500.00
###############################################################
PLOT 0 (single histo plot)
runs 1 2
range 0.00 4.00 -0.25 0.25
###############################################################
STATISTIC --- 2010-01-08 14:34:28
chisq = 546.920845, NDF = 415, chisq/NDF = 1.31788155

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@ -0,0 +1,90 @@
Test libTFitPofB SC Meissner state, single histogram plot, ROOT data file
###############################################################
FITPARAMETER
# No Name Value Step Pos_Error Boundaries
1 field 94.717 0 none
2 deadlayer 10.5 0 none
3 lambda 115.947 -0.91963 none
# E = 22keV
4 phase22 25.4956 0 none
5 asym22 0.104724 -0.00293244 none 0 0.3
6 rate22 0.558459 -0.0323891 none
7 NormL22 753.067 -0.86835 none
8 BGL22 51.0796 -0.132894 none
9 NormR22 545.968 -0.762193 none
10 BGR22 38.5992 -0.115679 none
11 relasyR22 1.0697 -0.0377904 none 0.2 2
12 relphaR22 162.711 -1.53722 none 110 210
13 energy22 22 0 none
14 one 1 0 none
15 zero 0 0 none
###############################################################
THEORY
asymmetry fun1
simpleGss map3 (rate)
userFcn libFitPofB TLondon1DHS fun2 map6 1 2 3
###############################################################
FUNCTIONS
fun1 = map2 * map4
fun2 = map1 + map5
fun3 = par1 * gamma_mu
###############################################################
RUN data/lem09_his_0916 MUE4 PSI ROOT-NPP (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 7
backgr.fit 8
lifetimecorrection
map 4 5 6 14 15 13 0 0 0 0
forward 1
background 65000 66500
data 3419 63000
t0 3419
fit 0.15 10.00
packing 150
RUN data/lem09_his_0916 MUE4 PSI ROOT-NPP (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 9
backgr.fit 10
lifetimecorrection
map 4 5 6 11 12 13 0 0 0 0
forward 3
background 65000 66500
data 3419 63000
t0 3419
fit 0.15 10.00
packing 150
###############################################################
COMMANDS
MINIMIZE
#HESSE
#MINOS
#SCAN 3
CONTOURS 2 3
MNPLOT
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 10
apodization WEAK # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase par4
range 0.00 200.00
###############################################################
PLOT 0 (single histo plot)
runs 1 2
range 0.00 4.00 -0.25 0.25
###############################################################
STATISTIC --- 2010-03-12 11:22:43
*** FIT DID NOT CONVERGE ***

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@ -0,0 +1,39 @@
Test libGapIntegrals (arbitrary data), ASCII data file
###############################################################
FITPARAMETER
# Nr. Name Value Step Pos_Error Boundaries
1 lambdaInvSq0 12.7664 0.40786 none
2 Tc 0.555355 0.0203235 none 0 2
3 Delta0 0.110329 0.00576485 none
###############################################################
THEORY
asymmetry 1
userFcn libGapIntegrals TGapDWave 2 3
###############################################################
#FUNCTIONS
###############################################################
RUN data/libGapIntegrals-test PIM3 PSI ASCII (name beamline institute data-file-format)
fittype 8 (non muSR fit)
map 0 0 0 0 0 0 0 0 0 0
xy-data 1 2
fit 0.00 10.00
packing 1
###############################################################
COMMANDS
MINIMIZE
HESSE
#MINOS
SAVE
###############################################################
PLOT 8 (non muSR plot)
runs 1
range 0.00 1.40
###############################################################
STATISTIC --- 2010-01-08 13:54:19
chisq = 15.4862481, NDF = 8, chisq/NDF = 1.93578101

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@ -0,0 +1,77 @@
Test libLFRelaxation (fit is without any meaning!), MUD data file
###############################################################
FITPARAMETER
# Nr. Name Value Step Pos_Error Boundaries
1 alpha 1 0 none 0 2
2 asy 0.179075 0.000762359 none 0 0.33
3 field 49.5715 4.51847 none 0 none
4 statWidth 0.28921 0.018236 none 0 none
5 fluctRate 1.76711 0.0982698 none 0 none
6 one 1 0 none
7 zero 0 0 none
###############################################################
THEORY
asymmetry fun1
dynExpKTLF fun3 4 5 (frequency damping hopping-rate)
+
asymmetry fun2
userFcn libLFRelaxation TLFDynExpKT fun3 4 5
###############################################################
FUNCTIONS
fun1 = par2 * map1
fun2 = par2 * map2
fun3 = par3 * gamma_mu
###############################################################
RUN ../data/000100 XXXX TRIUMF MUD (name beamline institute data-file-format)
fittype 2 (asymmetry fit)
alpha 1
map 6 7 0 0 0 0 0 0 0 0 0
forward 1
backward 2
background 79 391 80 409
data 438 12785 436 12787
t0 432 431
fit 0.00 8.00
packing 100
RUN ../data/000100 XXXX TRIUMF MUD (name beamline institute data-file-format)
fittype 2 (asymmetry fit)
alpha 1
map 7 6 0 0 0 0 0 0 0 0 0
forward 1
backward 2
background 79 391 80 409
data 438 12785 436 12787
t0 432 431
fit 0.00 8.00
packing 100
###############################################################
COMMANDS
MINIMIZE
#MINOS
HESSE
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 9
apodization NONE # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase 0
#range_for_phase_correction 50.0 70.0
range 0.00 200.00
###############################################################
PLOT 2 (asymmetry plot)
runs 1 2
range 0.00 8.00 0.00 0.25
###############################################################
STATISTIC --- 2010-01-08 16:42:33
chisq = 202.118575, NDF = 200, chisq/NDF = 1.01059287

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@ -0,0 +1,57 @@
Test libZFRelaxation random fields Lorentzian broadened, asymmetry plot, PSI-BIN data file
###############################################################
FITPARAMETER
# No Name Value Step Pos_Error Boundaries
1 precFrac 0.666667 0 none 0 1
2 field 171.20 0.55 none 0 none
3 lambdaT 1.303 0.061 none 0 none
4 lambdaL 0.099 0.012 none 0 none
5 asymmetry 0.1429 0.0039 none 0 0.3
6 alpha 0.8209 0.0027 none
###############################################################
THEORY
asymmetry 5
userFcn libZFRelaxation ZFMagExp 1 fun1 3 4
###############################################################
FUNCTIONS
fun1 = par2 * gamma_mu
###############################################################
RUN data/deltat_pta_gps_4255 PIM3 PSI PSI-BIN (name beamline institute data-file-format)
fittype 2 (asymmetry fit)
alpha 6
map 0 0 0 0 0 0 0 0 0 0
forward 2
backward 1
t0 125 128
data 128 8097 131 8112
background 45 113 40 117
fit 0 8
packing 30
###############################################################
COMMANDS
MINIMIZE
HESSE
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 8
apodization NONE # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase 0
range 0 500
###############################################################
PLOT 2 (asymmetry plot)
runs 1
range 0 4 -0.25 0.25
###############################################################
STATISTIC --- 2011-05-09 14:56:44
chisq = 470.01394974044985, NDF = 208, chisq/NDF = 2.2596824506752395

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BIN
doc/examples/data/32482.NXS Normal file

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@ -0,0 +1,55 @@
MgB12H12 No2 ZF T=150
###############################################################
FITPARAMETER
# Nr. Name Value Step Pos_Error Boundaries
1 alpha 1.0 0.0 none 0 2
2 asy 0.17503 -0.00081 0.00083 0 0.33
3 rate 0.1649 -0.0016 0.0016 0 none
4 beta 0.892 -0.016 0.016 0.5 2
###############################################################
THEORY
asymmetry 2
generExpo 3 4 (rate exponent)
###############################################################
#FUNCTIONS
###############################################################
RUN data/000100 XXXX TRIUMF MUD (name beamline institute data-file-format)
fittype 2 (asymmetry fit)
alpha 1
map 0 0 0 0 0 0 0 0 0 0 0
forward 1
backward 2
background 79 391 80 409
data 438 12785 436 12787
t0 432 431
fit 0 8
packing 100
###############################################################
COMMANDS
MINIMIZE
MINOS
#HESSE
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 12
apodization NONE # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase 8
#range_for_phase_correction 50.0 70.0
range 0 200
###############################################################
PLOT 2 (asymmetry plot)
runs 1
range 0 8 0 0.25
###############################################################
STATISTIC --- 2011-02-06 15:03:19
chisq = 133.92904274288378, NDF = 99, chisq/NDF = 1.3528186135644826

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@ -0,0 +1,59 @@
Test asymmetry plot, PSI-BIN data file
###############################################################
FITPARAMETER
# Nr. Name Value Step Pos_Error Boundaries
1 alpha 0.954734 0 none 0 2
2 asy 0.262387 0.00144114 none 0 0.33
3 phase -0.0892349 0.327999 none
4 field 97.9113 0.0550109 none 0 none
5 rate 0.31646 0.00441463 none 0 none
###############################################################
THEORY
asymmetry 2
simplExpo 5 (rate)
TFieldCos 3 fun1 (phase frequency)
###############################################################
FUNCTIONS
fun1 = par4 * gamma_mu
###############################################################
RUN data/deltat_pta_gpd_0423 PIE1 PSI PSI-BIN (name beamline institute data-file-format)
fittype 2 (asymmetry fit)
alpha 1
map 0 0 0 0 0 0 0 0 0 0 0
forward 2
backward 1
background 61 184 57 145
data 207 7994 167 8009
t0 202 162
fit 0.00 8.00
packing 18
###############################################################
COMMANDS
MINIMIZE
#MINOS
HESSE
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 12
apodization NONE # NONE, WEAK, MEDIUM, STRONG
plot POWER # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
phase 8.50
#range_for_phase_correction 50.0 70.0
range 0.00 200.00
###############################################################
PLOT 2 (asymmetry plot)
runs 1
range 0.00 8.00 -0.30 0.30
view_packing 38
###############################################################
STATISTIC --- 2010-05-26 21:27:41
chisq = 545.990682, NDF = 351, chisq/NDF = 1.55552901

View File

@ -0,0 +1,74 @@
Temperature = 300 K, Magnetic Field = 20 Gauss, Sample = CAS
###############################################################
FITPARAMETER
# No Name Value Step Pos_Error Boundaries
1 zero 0 0 none
2 phase 11.43 -0.35 0.34 0 100
3 field 20.181 -0.028 0.028 0 none
4 asym 0.1876 -0.0010 0.0010 0 0.3
5 rate 0.1254 -0.0024 0.0024 0 100
6 beta 1 0 none
7 Norm_L 2863.3 -1.4 1.4
8 BG_L 0.000000000047 -0.000000000047 0.009142577870 0 none
9 Norm_R 2024.4 -1.1 1.2 0 none
10 BG_R 0.0000 -0.0000 0.0017 0 none
11 relPhase 172.23 -0.37 0.36 0 none
###############################################################
THEORY
asymmetry 4
generExpo 5 6 (rate exponent)
TFieldCos fun1 fun2 (phase frequency)
###############################################################
FUNCTIONS
fun1 = par2 + map1
fun2 = gamma_mu * par3
###############################################################
RUN data/32482 XXXX ISIS NEXUS (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 7
backgr.fit 8
lifetimecorrection
map 1 0 0 0 0 0 0 0 0 0
forward 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16
data 40 1500
fit 0.2 20
packing 1
RUN data/32482 XXXX ISIS NEXUS (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 9
backgr.fit 10
lifetimecorrection
map 11 0 0 0 0 0 0 0 0 0
forward 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32
data 40 1500
fit 0.2 20
packing 1
###############################################################
COMMANDS
MINIMIZE
MINOS
SAVE
###############################################################
FOURIER
units Gauss # units either 'Gauss', 'MHz', or 'Mc/s'
fourier_power 10
apodization STRONG # NONE, WEAK, MEDIUM, STRONG
plot REAL # REAL, IMAG, REAL_AND_IMAG, POWER, PHASE
range 0 100
phase par2
###############################################################
PLOT 0 (single histo plot)
runs 1 2
range 0 20 -0.3 0.3
view_packing 5
###############################################################
STATISTIC --- 2011-04-08 10:54:21
chisq = 3051.73767, NDF = 2465, chisq/NDF = 1.23802745

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@ -0,0 +1,47 @@
LSCO (492-494) ZFC T=4.59(K),E=12.49(keV),B=~28(G)/0.89(A),Tr/Sa=15.02/1.63(kV),RAL-RAR=-0.08(kV),RAT-RAB=0.08(kV)
###############################################################
FITPARAMETER
# No Name Value Step Pos_Error Boundaries
1 phase 15.2 -1.6 1.6 0 100
2 freq 0.3733 -0.0024 0.0024 0 300
3 asym 0.1196 -0.0037 0.0039 0 0.3
4 rate 0.142 -0.017 0.018 0 100
5 Norm_L 432.87 -0.72 0.72
6 BG_L 29.38 -0.10 0.10
###############################################################
THEORY
asymmetry 3
simplExpo 4 (rate)
TFieldCos 1 2 (phase frequency)
###############################################################
#FUNCTIONS
###############################################################
RUN data/lem08_his_2279 MUE4 PSI ROOT-NPP (name beamline institute data-file-format)
fittype 0 (single histogram fit)
norm 5
backgr.fit 6
lifetimecorrection
map 0 0 0 0 0 0 0 0 0 0
forward 1
data 3419 66000
t0 3419
fit 0.1 10
packing 250
###############################################################
COMMANDS
MINIMIZE
MINOS
SAVE
###############################################################
PLOT 0 (single histo plot)
runs 1
range 0 8 -0.3 0.3
###############################################################
STATISTIC --- 2011-02-06 14:52:54
chisq = 248.83532814099809, NDF = 197, chisq/NDF = 1.2631234931015132

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