INFO: Using directory: "1" INFO: Using existing c-file: ./HZB_FLEX.c INFO: Using existing binary: ./HZB_FLEX.out INFO: === Simulation 'HZB_FLEX' (HZB_FLEX.instr): running on 20 nodes (master is 'hypatia.fysik.dtu.dk', MPI version 3.1). monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 Width at the guide exit (w2): 0.030412 monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize [HZB_FLEX] Initialize radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize monochromator angles are: A1=-37.166, A2=-74.332 [deg] radius of curvature RMH= -3.269 [m] radius of curvature RMV= -2.386 [m] sample angles are: A3= 0.000, A4= 70.000 [deg] analyser angles are: A5=-37.166, A6=-74.332 [deg] radius of curvature RAH= -1.655 [m] radius of curvature RAV= -0.813 [m] velocity selector frequency is 213.618 [Hz] lambda= 4.054 [A] kI= 1.550 [A^-1] EI= 4.978 [meV] Maxwellian source forced to emit only between l_min= 3.958 and l_max= 4.149 [A] in order to save simulation time correspondingly, the energy monitors at sample position are detecting between 4.752 and 5.222 [meV] [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize [HZB_FLEX] Initialize Component: elliptical_piece (Guide_tapering) Height at the guide exit (h2): 0.125000 Component: elliptical_piece (Guide_tapering) Width at the guide exit (w2): 0.030412 *** TRACE end *** Save [HZB_FLEX] Detector: Before_selec_I=2.97133e+07 Before_selec_ERR=43831.1 Before_selec_N=827962 "PSD_monitor_before.dat" Detector: After_selec_I=2.03484e+07 After_selec_ERR=36285.7 After_selec_N=483506 "PSD_monitor_after.dat" : 4.98537 meV , E-width : 0.136291 meV : 4.9855 meV , E-width : 0.13532 meV : 4.98343 meV , E-width : 0.135422 meV : 4.98578 meV , E-width : 0.135992 meV : 4.98402 meV , E-width : 0.135059 meV : 4.98096 meV , E-width : 0.135133 meV : 4.98499 meV , E-width : 0.134848 meV : 4.98451 meV , E-width : 0.135372 meV : 4.9849 meV , E-width : 0.135673 meV : 4.98602 meV , E-width : 0.135386 meV : 4.98299 meV , E-width : 0.134753 meV : 4.98201 meV , E-width : 0.135303 meV : 4.98359 meV , E-width : 0.135418 meV : 4.98446 meV , E-width : 0.135324 meV : 4.98534 meV , E-width : 0.135495 meV : 4.98184 meV , E-width : 0.135788 meV : 4.98464 meV , E-width : 0.13591 meV : 4.98479 meV , E-width : 0.135052 meV : 4.98167 meV , E-width : 0.135378 meV Detector: energy_endguide_I=1.32457e+07 energy_endguide_ERR=28036.7 energy_endguide_N=328071 "energy-endguide.dat" : 4.98473 meV , E-width : 0.13636 meV : 4.97877 meV , E-width : 0.0834609 meV : 4.98052 meV , E-width : 0.0832067 meV : 4.98187 meV , E-width : 0.0834504 meV : 4.98282 meV , E-width : 0.0817372 meV : 4.97946 meV , E-width : 0.0823831 meV : 4.98108 meV , E-width : 0.0832331 meV : 4.97962 meV , E-width : 0.0822448 meV : 4.98208 meV , E-width : 0.0831402 meV : 4.97837 meV , E-width : 0.0826082 meV : 4.98102 meV , E-width : 0.0825559 meV : 4.97949 meV , E-width : 0.0815559 meV : 4.98155 meV , E-width : 0.0806878 meV : 4.97617 meV , E-width : 0.0826467 meV : 4.98041 meV , E-width : 0.0823471 meV : 4.98058 meV , E-width : 0.0822745 meV : 4.97907 meV , E-width : 0.0834438 meV : 4.9794 meV , E-width : 0.0807507 meV : 4.9782 meV , E-width : 0.0836815 meV : 4.97978 meV , E-width : 0.0824567 meV Detector: energy_mono_I=4.30483e+06 energy_mono_ERR=15986.3 energy_mono_N=105582 "energy-mono.dat" : 4.98212 meV , E-width : 0.0837516 meV : 4.97881 meV , E-width : 0.0706169 meV : 4.97743 meV , E-width : 0.0699744 meV : 4.97824 meV , E-width : 0.0699688 meV : 4.98091 meV , E-width : 0.0716484 meV : 4.98228 meV , E-width : 0.0703699 meV : 4.97816 meV , E-width : 0.0699093 meV : 4.98004 meV , E-width : 0.0695457 meV : 4.9777 meV , E-width : 0.070457 meV : 4.98018 meV , E-width : 0.0706359 meV : 4.97719 meV , E-width : 0.069725 meV : 4.98049 meV , E-width : 0.0691751 meV : 4.97926 meV , E-width : 0.0695257 meV : 4.98023 meV , E-width : 0.0697722 meV : 4.97621 meV , E-width : 0.0696582 meV : 4.97885 meV , E-width : 0.0701907 meV : 4.97887 meV , E-width : 0.0696506 meV : 4.97955 meV , E-width : 0.0707256 meV : 4.97793 meV , E-width : 0.0693194 meV : 4.97719 meV , E-width : 0.0700959 meV Detector: energy_pre_sample_I=3.63678e+06 energy_pre_sample_ERR=14885 energy_pre_sample_N=76733 "energy-pre-sample.dat" : 4.98182 meV , E-width : 0.0698858 meV Detector: div_mono_I=4.04785e+06 div_mono_ERR=15595.8 div_mono_N=90240 "div-sample.dat" Detector: div_mono_H_I=356303 div_mono_H_ERR=4597.72 div_mono_H_N=8804 "H-div-sample.dat" Detector: psd_sam_I=4.31961e+06 psd_sam_ERR=16002.1 psd_sam_N=106741 "psd-sam.dat" Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Finally [HZB_FLEX: 1]. Time: 1 [s] Detector: dpsd1_I=4.31961e+06 dpsd1_ERR=16002.1 dpsd1_N=106741 "linpsdsam.dat" Finally [HZB_FLEX: 1]. Time: 1 [s] INFO: Placing instr file copy HZB_FLEX.instr in dataset 1 INFO: Placing generated c-code copy HZB_FLEX.c in dataset 1