INFO: Using directory: "1" INFO: Using existing c-file: ./Test_Sqw_monitor.c INFO: Using existing binary: ./Test_Sqw_monitor.out INFO: === Simulation 'Test_Sqw_monitor' (Test_Sqw_monitor.instr): running on 16 nodes (master is 'elearn1.fysik.dtu.dk', MPI version 3.1). Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Test_Sqw_monitor: lambda=4.1 [Angs], k=1.53248 [Angs-1], v=964.886 [m/s], E=4.8664 [meV]. Time=[0.00310917 0.00414557 0.00621835] Test_Sqw_monitor: sample is Rb_liq_coh.sqw, with hollow cylindrical geometry. Test_Sqw_monitor: detector is cylindrical with radius=4 [m] height=3 [m] and 468 tubes [1 inch] Test_Sqw_monitor: container is Al.laz (outer cylinder) Test_Sqw_monitor: external environment is Al.laz [Test_Sqw_monitor] Initialize Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Isotropic_Sqw: Sample_in: is a hollow cylinder: radius=0.005000 thickness=0.001000 height=0.030000 [J Comp Phys 228 (2009) 5251] Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_inc.sqw' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_inc.sqw' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_inc.sqw' (Table_Read_Offset) [Test_Sqw_monitor] Initialize Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_inc.sqw' (Table_Read_Offset) Isotropic_Sqw: Sample_in: Temperature set to T=350 [K] Isotropic_Sqw: Sample_in: S(q,w) data from Rb_liq_inc.sqw (inc) assumed to be classical (symmetrised in energy). Isotropic_Sqw: Sample_in: Applying exp(hw/2kT) factor with T=350 [K] on Rb_liq_inc.sqw file (classical/symmetric) using 'Frommhold' quantum correction Isotropic_Sqw: Sample_in: Generated Rb_liq_inc.sqw incoherent Sqw q=[0.1:10 Angs-1] w=[0:101.849 meV] |S|=0.985192 size=[101x10185] sigma=0.5 [barns] normalization factor S(q,w)*0.492586 (auto) \int q^2 S(q) dq=676.701 Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_coh.sqw' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_coh.sqw' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_coh.sqw' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Rb_liq_coh.sqw' (Table_Read_Offset) Isotropic_Sqw: Sample_in: Temperature set to T=350 [K] Isotropic_Sqw: Sample_in: S(q,w) data from Rb_liq_coh.sqw (coh) assumed to be classical (symmetrised in energy). Isotropic_Sqw: Sample_in: Applying exp(hw/2kT) factor with T=350 [K] on Rb_liq_coh.sqw file (classical/symmetric) using 'Frommhold' quantum correction Isotropic_Sqw: Sample_in: Generated Rb_liq_coh.sqw coherent Sqw q=[0.1:10 Angs-1] w=[0:101.849 meV] |S|=0.887933 size=[101x10185] sigma=6.32 [barns] normalization factor S(q,w)*0.477012 (auto) \int q^2 S(q) dq=698.369 Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) Opening input file '/home/nexmap/pkwi/McStas/mcstas/3.x-dev/data/Al.laz' (Table_Read_Offset) *** TRACE end *** Save [Test_Sqw_monitor] Detector: SampleIn_I=4.62754e-08 SampleIn_ERR=1.46509e-11 SampleIn_N=9.97829e+06 "SampleIn_1747178867.x_y" Detector: Detector_nM_I=7.69026e-10 Detector_nM_ERR=1.70849e-12 Detector_nM_N=3.50298e+06 "Sqw_map.dat" Detector: Detector_nM_coh_I=2.60116e-10 Detector_nM_coh_ERR=2.40496e-13 Detector_nM_coh_N=1.86119e+06 "Sqw_single.dat" Detector: Detector_nM_inc_I=2.54355e-11 Detector_nM_inc_ERR=7.51318e-14 Detector_nM_inc_N=178390 "Sqw_inc.dat" Detector: Detector_nM_multi_I=4.49718e-12 Detector_nM_multi_ERR=1.07579e-14 Detector_nM_multi_N=513086 "Sqw_multi.dat" Detector: Detector_nM_env_I=4.82439e-10 Detector_nM_env_ERR=1.6898e-12 Detector_nM_env_N=1.47801e+06 "Sqw_env.dat" Detector: M_total_I=1.87213e-10 M_total_ERR=6.97877e-13 M_total_N=1.23577e+06 "M_total_1747178870.A_t" Detector: M_single_coh_I=9.68142e-11 M_single_coh_ERR=1.46555e-13 M_single_coh_N=724821 "M_single_coh_1747178870.A_t" Detector: M_single_inc_I=1.21607e-11 M_single_inc_ERR=5.19073e-14 M_single_inc_N=83913 "M_single_inc_1747178870.A_t" Detector: M_multi_I=2.0937e-12 M_multi_ERR=7.34509e-15 M_multi_N=237663 "M_multi_1747178870.A_t" Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Detector: M_env_container_I=7.7731e-11 M_env_container_ERR=6.80327e-13 M_env_container_N=431314 "M_env_container_1747178870.A_t" Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 5 [s] Finally [Test_Sqw_monitor: 1]. Time: 6 [s] Isotropic_Sqw: Environment_in: 41 neutron events (out of 1001005) reached WARNING unrealistic weight. The S(q,w) norm might be too high. Isotropic_Sqw: Sample_in: 28944864 neutron events (out of 38350270) that should have scattered were transmitted because scattering conditions WARNING could not be satisfied after 100 tries. Isotropic_Sqw: Sample_in: 379 neutron events (out of 9405406) reached WARNING unrealistic weight. The S(q,w) norm might be too high. Isotropic_Sqw: Sample_in: Scattering fraction=0.020004 of incoming intensity Absorption fraction =0.122105 Single scattering intensity =8.97372e-10 (coh=8.25529e-10 inc=7.18428e-11) Multiple scattering intensity =1.264e-11 Isotropic_Sqw: Container_out: 16051 neutron events (out of 913068) that should have scattered were transmitted because scattering conditions WARNING could not be satisfied after 100 tries. Isotropic_Sqw: Container_out: 10 neutron events (out of 897017) reached WARNING unrealistic weight. The S(q,w) norm might be too high. Isotropic_Sqw: Environment_out: 16037 neutron events (out of 1018984) that should have scattered were transmitted because scattering conditions WARNING could not be satisfied after 100 tries. Isotropic_Sqw: Environment_out: 10602 neutron events (out of 1002947) reached WARNING unrealistic weight. The S(q,w) norm might be too high. INFO: Placing instr file copy Test_Sqw_monitor.instr in dataset 1 INFO: Placing generated c-code copy Test_Sqw_monitor.c in dataset 1