- Removed the extensions of the external libraries in the test files.
ROOT is anyway checking multiple extensions for dynamic libraries, therefore leaving them out yields platform-independent msr files. - Minor changes in libTFitPofB - Added a user function for Uemura's ZF/LF dynamical spin-glass relaxation function see, e.g. Y.J. Uemura et al., Phys. Rev. B 31, 546-563 (1985) or Y.J. Uemura, Hyperfine Interact. 8, 739 (1981) This yields an overall Lorentzian field distribution with motional narrowing. However, the present implementation is at best some design study: The Lorentzian distribution of width "a" is modeled by Gaussian distributions of widths "sigma" from 0 to infinity. Some "resonable cut-offs" would be: 0.1*a < sigma < 10000*a Due to finite memory and computing power, in the present version these cut-offs are: 0.1*a < sigma < 40*a This yields depolarization functions overall similar to those in Uemura's articles. However, due to the low cut-off the first derivative of the depolarization function is zero in the limit t->0 (what should not be the case for a true Lorentzan). Furthermore, the calculation is rather slow and the resulting functions should only be regarded as crude approximations. Therefore, at the moment this is far from being of practical use in analyzing experimental data.
This commit is contained in:
@@ -24,7 +24,7 @@ FITPARAMETER
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###############################################################
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THEORY
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asymmetry 3
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userFcn libPNL_PippardFitter.so PNL_PippardFitter 4 5 6 7 8 9 10 fun2 11
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userFcn libPNL_PippardFitter PNL_PippardFitter 4 5 6 7 8 9 10 fun2 11
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simpleGss 12 (rate)
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###############################################################
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@@ -10,7 +10,7 @@ FITPARAMETER
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###############################################################
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THEORY
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userFcn libCalcMeanFieldsLEM.so TMeanFieldsForScSingleLayer 1 2 3 4 5 5 5
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userFcn libCalcMeanFieldsLEM TMeanFieldsForScSingleLayer 1 2 3 4 5 5 5
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###############################################################
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#FUNCTIONS
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@@ -9,7 +9,7 @@ FITPARAMETER
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###############################################################
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THEORY
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asymmetry 1
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userFcn libGapIntegrals.so TGapDWave 2 3
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userFcn libGapIntegrals TGapDWave 2 3
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###############################################################
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#FUNCTIONS
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@@ -17,7 +17,7 @@ asymmetry fun1
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dynExpKTLF fun3 4 5 (frequency damping hopping-rate)
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+
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asymmetry fun2
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userFcn libLFRelaxation.so TLFDynLorKT fun3 4 5
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userFcn libLFRelaxation TLFDynLorKT fun3 4 5
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###############################################################
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FUNCTIONS
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@@ -25,7 +25,7 @@ FITPARAMETER
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THEORY
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asymmetry fun3
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simpleGss 6 (rate)
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userFcn libTFitPofB.so TBulkTriVortexML fun2 2 3 4
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userFcn libTFitPofB TBulkTriVortexML fun2 2 3 4
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+
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asymmetry fun4
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simpleGss 8 (rate)
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@@ -26,7 +26,7 @@ FITPARAMETER
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THEORY
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asymmetry fun1
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simpleGss map3 (rate)
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userFcn libTFitPofB.so TLondon1DHS fun2 map6 1 2 3
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userFcn libTFitPofB TLondon1DHS fun2 map6 1 2 3
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###############################################################
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FUNCTIONS
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