TY - ADVS
T1 - drtsans
AU - Bilheux, Jean-Christophe
AU - Billings, JayJ
AU - Borreguero Calvo, Jose
AU - Chen, Wei-Ren
AU - Cooper, CalebD
AU - Debeer-Schmitt, Lisa
AU - Do, Changwoo
AU - Doucet, Mathieu
AU - Ferraz Leal, RicardoMiguel
AU - Fitzsimmons, MichaelR
AU - Godoy, William
AU - Granroth, Garrett
AU - Hahn, Steven
AU - He, Lilin
AU - Heller, William
AU - Islam, Fahima
AU - Lin, Jiao
AU - Littrell, Kenneth
AU - Mcdonnell, Marshall
AU - Mcgaha, Jesse
AU - Peterson, Peter
AU - Pingali, Sai Venkatesh
AU - Qian, Shuo
AU - Savici, Andrei
AU - Urban, Volker
AU - Wang, Tao
AU - Whitfield, RossE
AU - Zhou, Wenduo
PY - 2021
Y1 - 2021
N2 - drtsans is highly modular, allowing users to customize collected data as well as test hypothetical or simulated neutron events data. Instrument scientists can use the advance features of drtsans to calibrate their instruments and reduced large quantities of datasets in a streamlined mode. Users can correct the collected data with dark current subtraction and normalization by neutron flux, detector sensitivity, solid angle subtended by the detectors, and scaling to absolute units. Conversion from time-of-flight and/or wavelength to 1D or 2D momentum transfer renders the final scattering quantities amenable to analysis.
AB - drtsans is highly modular, allowing users to customize collected data as well as test hypothetical or simulated neutron events data. Instrument scientists can use the advance features of drtsans to calibrate their instruments and reduced large quantities of datasets in a streamlined mode. Users can correct the collected data with dark current subtraction and normalization by neutron flux, detector sensitivity, solid angle subtended by the detectors, and scaling to absolute units. Conversion from time-of-flight and/or wavelength to 1D or 2D momentum transfer renders the final scattering quantities amenable to analysis.
U2 - 10.11578/dc.20220109.1
DO - 10.11578/dc.20220109.1
M3 - Software
CY - United States
ER -