## #######Sample SL1-freshpowder ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL1-freshpowder/") ##open_vg13() ## ##TRY.write(14.10) ##TRZ.write(28.90) ## ## ##time.sleep(1) # ##Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Survey', folder='XAS/2020/07/20/SL1-freshpowder/') ## ###Nickel L edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Ni', folder='XAS/2020/07/20/SL1-freshpowder/') ## ###Cobalt L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Co', folder='XAS/2020/07/20/SL1-freshpowder/') ## ###Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Fe', folder='XAS/2020/07/20/SL1-freshpowder/') ## ###Manganese L edge ##nr_loops=4 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_Mn', folder='XAS/2020/07/20/SL1-freshpowder/') ## ###Oxygen K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_O', folder='XAS/2020/07/20/SL1-freshpowder') ## ## ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpowder_C', folder='XAS/2020/07/20/SL1-freshpowder') ## ## ##time.sleep(1) ## ## ########Sample SL1-fresh-pellet ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL1-freshpellet/") ##open_vg13() ## ##TRY.write(9.70) ##TRZ.write(28.90) ## ## ##time.sleep(1) ## ####Survey ###nr_loops=1 ###for i in range(nr_loops): ### caput('X11MA-KEI10:RANGE', 7) ### caput('X11MA-KEI11:RANGE', 8) ### caput('X11MA-KEI12:RANGE', 9) ### otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Survey', folder='XAS/2020/07/20/SL1-freshpellet/') ### ###Nickel L edge ###nr_loops=2 ###for i in range(nr_loops): ### caput('X11MA-KEI10:RANGE', 7) ### caput('X11MA-KEI11:RANGE', 8) ### caput('X11MA-KEI12:RANGE', 10) ### otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Ni', folder='XAS/2020/07/20/SL1-freshpellet/') ### ####Cobalt L edge ###nr_loops=1 ###for i in range(nr_loops): ### caput('X11MA-KEI10:RANGE', 7) ### caput('X11MA-KEI11:RANGE', 8) ### caput('X11MA-KEI12:RANGE', 9) ### otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Co', folder='XAS/2020/07/20/SL1-freshpellet/') ### ####Fluor + Fe edges ###nr_loops=1 ###for i in range(nr_loops): ### caput('X11MA-KEI10:RANGE', 7) ### caput('X11MA-KEI11:RANGE', 8) ### caput('X11MA-KEI12:RANGE', 10) ### otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Fe', folder='XAS/2020/07/20/SL1-freshpellet/') ### ####Manganese L edge ###nr_loops=4 ###for i in range(nr_loops): ### caput('X11MA-KEI10:RANGE', 7) ### caput('X11MA-KEI11:RANGE', 8) ### caput('X11MA-KEI12:RANGE', 10) ### otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_Mn', folder='XAS/2020/07/20/SL1-freshpellet/') ## ###Oxygen K edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_O', folder='XAS/2020/07/20/SL1-freshpellet/') ## ## ###Carbon K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL1-freshpellet_C', folder='XAS/2020/07/20/SL1-freshpellet/') ## ## ##time.sleep(1) # # ########Sample SL5 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL5/") ##open_vg13() ## ##TRY.write(6.00) ##TRZ.write(24.90) ## ## ##time.sleep(1) # ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Survey', folder='XAS/2020/07/20/SL5/') ## ###Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Ni', folder='XAS/2020/07/20/SL5/') ## ###Cobalt L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Co', folder='XAS/2020/07/20/SL5/') ## ###Fluor + Fe edges ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Fe', folder='XAS/2020/07/20/SL5/') ## ###Manganese L edge ##nr_loops=4 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_Mn', folder='XAS/2020/07/20/SL5/') ## ###Oxygen K edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_O', folder='XAS/2020/07/20/SL5/') ## ####Carbon K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL5_C', folder='XAS/2020/07/20/SL5/') ## ## ##time.sleep(1) ## ## #########Sample SL4 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL4/") ##open_vg13() ## ##TRY.write(11.70) ##TRZ.write(24.30) ## ## ##time.sleep(1) # ##Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Survey', folder='XAS/2020/07/20/SL4/') ## ###Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Ni', folder='XAS/2020/07/20/SL4/') ## ###Cobalt L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Co', folder='XAS/2020/07/20/SL4/') ## ###Fluor + Fe edges ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Fe', folder='XAS/2020/07/20/SL4/') # ##Manganese L edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_Mn', folder='XAS/2020/07/20/SL4/') ## ##Oxygen K edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_O', folder='XAS/2020/07/20/SL4/') ## # ###Carbon K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL4_C', folder='XAS/2020/07/20/SL4/') ## ##time.sleep(1) # ## #######Sample LH2 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH2/") ##open_vg13() ## ##TRY.write(18.50) ##TRZ.write(17.60) ## ## ##time.sleep(1) # ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Survey', folder='XAS/2020/07/20/LH2/') ## ###Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Ni', folder='XAS/2020/07/20/LH2/') ### ###Cobalt L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Co', folder='XAS/2020/07/20/LH2/') # ##Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Fe', folder='XAS/2020/07/20/LH2/') ## ##Manganese L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_Mn', folder='XAS/2020/07/20/LH2/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_O', folder='XAS/2020/07/20/LH2') # ## ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH2_C', folder='XAS/2020/07/20/LH2') ## ##time.sleep(1) ## ########Sample LH1B ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH1B/") ##open_vg13() ## ##TRY.write(12.50) ##TRZ.write(15.00) ## ## ##time.sleep(1) ### ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Survey', folder='XAS/2020/07/20/LH1B/') ## ###Nickel L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Ni', folder='XAS/2020/07/20/LH1B/') # ###Cobalt L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Co', folder='XAS/2020/07/20/LH1B/') # ###Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Fe', folder='XAS/2020/07/20/LH1B/') ## ###Manganese L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_Mn', folder='XAS/2020/07/20/LH1B/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_O', folder='XAS/2020/07/20/LH1B') # # ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1B_C', folder='XAS/2020/07/20/LH1B') # ##time.sleep(1) ## ########Sample LH1A ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH1A/") ##open_vg13() ## ##TRY.write(12.90) ##TRZ.write(9.70) ## ## ##time.sleep(1) ## ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Survey', folder='XAS/2020/07/20/LH1A/') ## ###Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Ni', folder='XAS/2020/07/20/LH1A/') # ###Cobalt L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Co', folder='XAS/2020/07/20/LH1A/') # ###Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Fe', folder='XAS/2020/07/20/LH1A/') ## ##Manganese L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_Mn', folder='XAS/2020/07/20/LH1A/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_O', folder='XAS/2020/07/20/LH1A') ## ## ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH1A_C', folder='XAS/2020/07/20/LH1A') ## ##time.sleep(1) ## #######Sample LH5 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH5/") ##open_vg13() ## ##TRY.write(3.40) ##TRZ.write(16.50) ## ## ##time.sleep(1) # ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Survey', folder='XAS/2020/07/20/LH5/') # ###Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Ni', folder='XAS/2020/07/20/LH5/') # ###Cobalt L edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Co', folder='XAS/2020/07/20/LH5/') ### ###Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Fe', folder='XAS/2020/07/20/LH5/') # ###Manganese L edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_Mn', folder='XAS/2020/07/20/LH5/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_O', folder='XAS/2020/07/20/LH5') # # ###Carbon K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH5_C', folder='XAS/2020/07/20/LH5') ## ##time.sleep(1) # ########Sample LH6 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH6/") ##open_vg13() ## ##TRY.write(7.30) ##TRZ.write(10.40) ## ## ##time.sleep(1) # ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Survey', folder='XAS/2020/07/20/LH6/') ## ###Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Ni', folder='XAS/2020/07/20/LH6/') ## ###Cobalt L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Co', folder='XAS/2020/07/20/LH6/') ## ###Manganese L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_Mn', folder='XAS/2020/07/20/LH6/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH6_O', folder='XAS/2020/07/20/LH6') ## ## ##time.sleep(1) # #######Sample LH3 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH3/") ##open_vg13() ## ##TRY.write(7.50) ##TRZ.write(18.00) ### ## ##time.sleep(1) ### ##Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Survey', folder='XAS/2020/07/20/LH3/') # ##Nickel L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Ni', folder='XAS/2020/07/20/LH3/') ### ###Cobalt L edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Co', folder='XAS/2020/07/20/LH3/') ## ###Manganese L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_Mn', folder='XAS/2020/07/20/LH3/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_O', folder='XAS/2020/07/20/LH3') # ## ##Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH3_C', folder='XAS/2020/07/20/LH3') # ##time.sleep(1) ## #######Sample LH4 #set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH4/") #open_vg13() # #TRY.write(18.50) #TRZ.write(11.10) ## ## #time.sleep(1) ## ###Survey ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Survey', folder='XAS/2020/07/20/LH4/') ## ##Nickel L edge #nr_loops=1 #for i in range(nr_loops): # caput('X11MA-KEI10:RANGE', 7) # caput('X11MA-KEI11:RANGE', 8) # caput('X11MA-KEI12:RANGE', 9) # otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Ni', folder='XAS/2020/07/20/LH4/') ### ###Cobalt L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Co', folder='XAS/2020/07/20/LH4/') # ###Manganese L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_Mn', folder='XAS/2020/07/20/LH4/') ## ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_O', folder='XAS/2020/07/20/LH4/') ## # ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH4_C', folder='XAS/2020/07/20/LH4/') ## ##time.sleep(1) ## ########Sample SL3 set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/SL3/") open_vg13() TRY.write(18.20) TRZ.write(26.20) time.sleep(1) ###Survey nr_loops=1 for i in range(nr_loops): caput('X11MA-KEI10:RANGE', 7) caput('X11MA-KEI11:RANGE', 7) caput('X11MA-KEI12:RANGE', 9) otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Survey', folder='XAS/2020/07/20/SL3/') ####Nickel L edge #nr_loops=1 #for i in range(nr_loops): # caput('X11MA-KEI10:RANGE', 7) # caput('X11MA-KEI11:RANGE', 8) # caput('X11MA-KEI12:RANGE', 10) # otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Ni', folder='XAS/2020/07/20/SL3/') ###Cobalt L edge #nr_loops=2 #for i in range(nr_loops): # caput('X11MA-KEI10:RANGE', 7) # caput('X11MA-KEI11:RANGE', 8) # caput('X11MA-KEI12:RANGE', 10) # otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Co', folder='XAS/2020/07/20/SL3/') ###Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Fe', folder='XAS/2020/07/20/SL3/') ## ###Manganese L edge ##nr_loops=4 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_Mn', folder='XAS/2020/07/20/SL3/') ## ###Oxygen K edge nr_loops=1 for i in range(nr_loops): caput('X11MA-KEI10:RANGE', 7) caput('X11MA-KEI11:RANGE', 8) caput('X11MA-KEI12:RANGE', 9) otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_O', folder='XAS/2020/07/20/SL3/') # ## ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='SL3_C', folder='XAS/2020/07/20/SL3/') ## ##time.sleep(1) ## ########Sample LH7 ##set_exec_pars(path="/sls/X11MA/data/X11MA/Data1/XAS/2020/07/20/LH7/") ##open_vg13() ## ##TRY.write(2.40) ##TRZ.write(20.90) ### ### ##time.sleep(1) ## ###Survey ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 7) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=500, end=900, time=3, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Survey', folder='XAS/2020/07/20/LH7/') # ###Nickel L edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=845, end=885, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Ni', folder='XAS/2020/07/20/LH7/') ## ###Cobalt L edge ##nr_loops=2 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=772, end=805, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Co', folder='XAS/2020/07/20/LH7/') ### ###Fluor + Fe edges ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=680, end=735, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Fe', folder='XAS/2020/07/20/LH7/') ## ###Manganese L edge ##nr_loops=4 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=630, end=670, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_Mn', folder='XAS/2020/07/20/LH7/') # ###Oxygen K edge ##nr_loops=1 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 9) ## otf(start=520, end=570, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_O', folder='XAS/2020/07/20/LH7') ## # ###Carbon K edge ##nr_loops=3 ##for i in range(nr_loops): ## caput('X11MA-KEI10:RANGE', 7) ## caput('X11MA-KEI11:RANGE', 8) ## caput('X11MA-KEI12:RANGE', 10) ## otf(start=270, end=320, time=2, delay=10, mode='LINEAR', alpha = 0.0, offset=0.0, name='LH7_C', folder='XAS/2020/07/20/LH7') # #time.sleep(1) # # #close_vg13() # #