Files
x03da/script/users/X-Treme users/X-Treme_XPSScan_HOPG.py
gac-x03da d6a2e15ff0 Closedown
2022-06-08 10:57:59 +02:00

81 lines
2.5 KiB
Python

import ch.psi.pshell.plot.RangeSelectionPlot.RangeSelection as RangeSelection
# caution: do not insert multiple runs in the same script!
# earlier runs are overwritten!
################## THIS IS TO OPEN THE VALVES /SHUTTER
if caget('X03DA-OP-VG7:OPEN') == 'Not_Open':
caput('X03DA-OP-VG7:WT_SET',0) #open ES vacuum valve
time.sleep(0.2)
caput('X03DA-OP-VG7:WT_SET',1) #open ES vacuum valve
#Grating should be G1 / 600 for 800 eV overview spectrum
"""
# 800 eV Overview Scan
Ephot = 800.0
ExitSlit.write(30)
rs = RangeSelection(100.0,Ephot)
rs.setVars([0.5, 0.5, 1, Ephot]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# Cl 2p 595 eV fine scan
ExitSlit.write(30)
rs = RangeSelection(588.0,604.0)
rs.setVars([0.5, 0.05, 3, 800.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# Cl 2s 525 eV fine scan
ExitSlit.write(30)
rs = RangeSelection(518.0,530.0)
rs.setVars([0.5, 0.05, 3, 800.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# C 1s 500 eV fine scan
ExitSlit.write(30)
rs = RangeSelection(495.0,521.0)
rs.setVars([0.5, 0.05, 3, 800.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# O 1s 200 eV fine scan
rs = RangeSelection(250.0,275.0)
rs.setVars([0.5, 0.05, 3, 800.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# 800 eV Er 4d
ExitSlit.write(50)
rs = RangeSelection(619.0,629.0)
rs.setVars([0.5, 0.02, 5, 800.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# 800 eV VB and Fermi level fine scan
ExitSlit.write(50)
rs = RangeSelection(780.0,798.0)
rs.setVars([0.5, 0.02, 3, 800.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs, ], "ENDSCAN":True, "pass_energy":50})
"""
"""
# VB 62 eV fine scan exit slit 50
ExitSlit.write(50)
rs = RangeSelection(40.0,57.0)
rs.setVars([0.5, 0.02, 3, 62.0]) #Time, Size, Iteration, photon energy
run("XPSSpectrum", {"save_scienta_image":True, "ranges":[rs,], "ENDSCAN":True, "pass_energy":20})