The neutron instrument simulation package, NISP

被引:14
|
作者
Seeger, PA [1 ]
Daemen, LL [1 ]
机构
[1] Los Alamos Natl Lab, Los Alamos Neutron Scattering Ctr, Los Alamos, NM 87545 USA
关键词
NISP; Monte Carlo; simulation; neutron instruments;
D O I
10.1117/12.559817
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
The Neutron Instrument Simulation Package (NISP) performs complete source-to-detector simulations of neutron instruments, including neutrons that do not follow the expected path. The original user interface (MC Web) is a web-based application, http://strider.lansce.lanl.gov/NISP/Welcome.html. This report describes in detail the newer stand-alone Windows version, NISP Win. Instruments are assembled from menu-selected elements, including neutron sources, collimation and transport elements, samples, analyzers, and detectors. Magnetic field regions may also be specified for the propagation of polarized neutrons including spin precession. Either interface writes a geometry file that is used as input to the Monte Carlo engine (MC Run) in the user's computer. Both the interface and the engine rely on a subroutine library, MCLIB. The package is completely open source. New features include capillary optics, temperature dependence of Al and Be, revised source files for ISIS, and visualization of neutron trajectories at run time. Also, a single-crystal sample type has been successfully imported from McStas (with more generalized geometry), demonstrating the capability of including algorithms from other sources, and NISP Win may render the instrument in a virtual reality file. Results are shown for two instruments under development.
引用
收藏
页码:109 / 123
页数:15
相关论文
共 50 条
  • [1] New developments in the McStas neutron instrument simulation package
    Willendrup, P. K.
    Knudsen, E. B.
    Klinkby, E.
    Nielsen, T.
    Farhi, E.
    Filges, U.
    Lefmann, K.
    INTERNATIONAL WORKSHOP ON NEUTRON OPTICS AND DETECTORS (NOP&D 2013), 2014, 528
  • [2] Neutron instrument simulation and optimization using the software package VITESS
    Lieutenant, K
    Zsigmond, G
    Manoshin, S
    Fromme, M
    Bordallo, HN
    Champion, JDM
    Peters, J
    Mezei, F
    ADVANCES IN COMPUTATIONAL METHODS FOR X-RAY AND NEUTRON OPTICS, 2004, 5536 : 134 - 145
  • [3] Testing NISP instrument on ground
    Costille, Anne
    Carle, M.
    Prieto, E.
    Pons, M.
    Fabron, C.
    Andersen, M. I.
    Sorensen, A. N.
    Jensen, N. C.
    Pedersen, S. M.
    Maciaszek, T.
    INTERNATIONAL CONFERENCE ON SPACE OPTICS-ICSO 2018, 2018, 11180
  • [4] Advanced sources and optical components for the McStas neutron scattering instrument simulation package
    Farhi, E.
    Monzat, C.
    Arnerin, R.
    van Vuure, T.
    Castan-Guerrero, C.
    Hennane, C.
    Harraud, P. A.
    Campioni, G.
    Fuard, S.
    Ollivier, J.
    Willendrup, P.
    JOURNAL OF NEUTRON RESEARCH, 2014, 17 (01) : 63 - 74
  • [5] Instrument Simulations of the EUCLID/NISP Spectrometer
    Zoubian, J.
    Kuemmel, M.
    Kermiche, S.
    Apostolakos, N.
    Chapon, A.
    Ealet, A.
    Franzetti, P.
    Garilli, B.
    Jullo, E.
    Paioro, L.
    ASTRONOMICAL DATA ANALYSIS SOFTWARE AND SYSTEMS XXIII, 2014, 485 : 509 - 512
  • [6] Focal plane mechanical design of the NISP/Euclid instrument
    Bonnefoi, Anne
    Bon, William
    Niclas, Mathieu
    Solheim, Bjarte G. B.
    Torvanger, Oyvind
    Schistad, Robert
    Foulon, Benjamin
    Garcia, Jose
    Vives, Sebastien
    SPACE TELESCOPES AND INSTRUMENTATION 2016: OPTICAL, INFRARED, AND MILLIMETER WAVE, 2016, 9904
  • [7] The Euclid-NISP instrument optics and tolerancing approach
    Grupp, Frank
    Pietro, Eric
    Spano, Paolo
    Zerbi, Filippo M.
    Geis, Norbert
    Bode, Andreas
    Junk, Veronika
    Bender, Ralf
    UV/OPTICAL/IR SPACE TELESCOPES AND INSTRUMENTS: INNOVATIVE TECHNOLOGIES AND CONCEPTS V, 2011, 8146
  • [8] The data processing unit of the NISP instrument of the Euclid mission
    Corcione, L.
    Ligori, S.
    Capobianco, V.
    Bortoletto, F.
    Bonoli, C.
    D'Alessandro, M.
    Longoni, A.
    Grimoldi, R.
    Valenziano, L.
    SPACE TELESCOPES AND INSTRUMENTATION 2014: OPTICAL, INFRARED, AND MILLIMETER WAVE, 2014, 9143
  • [9] How to test NISP instrument for EUCLID mission in laboratory
    Costille, A.
    Carle, Michael
    Fabron, Christophe
    Prieto, Eric
    Beaumont, Florent
    Jessen, Niels-Christian
    Jakobsen, Peter
    Sorensen, Anton Norup
    Andersen, Michael Ingemann
    Grupp, Frank
    Maciaszek, Thierry
    Ealet, Anne
    Gillard, William
    Clemens, Jean-claude
    SPACE TELESCOPES AND INSTRUMENTATION 2016: OPTICAL, INFRARED, AND MILLIMETER WAVE, 2016, 9904
  • [10] EGSE customization for the Euclid NISP Instrument AIV/AIT activities
    Franceschi, E.
    Trifoglio, M.
    Gianotti, F.
    Conforti, V.
    Andersen, J. J.
    Stephen, J. B.
    Valenziano, L.
    Auricchio, N.
    Bulgarelli, A.
    De Rosa, A.
    Fioretti, V.
    Maiorano, E.
    Morgante, G.
    Nicastro, L.
    Sortino, F.
    Zoli, A.
    Balestra, A.
    Bonino, D.
    Bonoli, C.
    Bortoletto, F.
    Capobianco, V.
    Corcione, L.
    Dal Corso, F.
    Debei, S.
    Di Ferdinando, D.
    Dusini, S.
    Farinelli, R.
    Fornari, F.
    Giacomini, F.
    Guizzo, G. P.
    Laudisio, F.
    Ligori, S.
    Mauri, N.
    Medinaceli, E.
    Patrizii, L.
    Sirignano, C.
    Sirri, G.
    Stanco, L.
    Tenti, M.
    Valieri, C.
    Ventura, S.
    SPACE TELESCOPES AND INSTRUMENTATION 2016: OPTICAL, INFRARED, AND MILLIMETER WAVE, 2016, 9904