Monte Carlo simulation of virtual Compton scattering below pion threshold
P. Janssens, L. Van Hoorebeke, H. Fonvieille, N. D'Hose, P. Y. Bertin, I. Bensafa, N. Degrande, M. Distler, R. Di Salvo, L. Doria, J. M. Friedrich, J. Friedrich, Ch. Hyde-Wright, S. Jaminion, S. Kerhoas, G. Laveissiere, D. Lhuillier, D. Marchand, H. Merkel, J. Roche, G. Tamas, M. Vanderhaeghen, R. Van de Vyver, J. Van de Wiele, Th. Walcher
Abstract
This paper describes the Monte Carlo simulation developed specifically for the VCS experiments below pion threshold that have been performed at MAMI and JLab. This simulation generates events according to the (Bethe-Heitler + Born) cross section behaviour and takes into account all relevant resolution-deteriorating effects. It determines the `effective' solid angle for the various experimental settings which are used for the precise determination of photon electroproduction absolute cross section.
Create a lesson
Related papers
Multi-fidelity Monte Carlo estimation of floor response spectra under combined seismic and structural parameter uncertainties
Nils Baillie, Baptiste Kerleguer, Cyril Feau et al.
Parameter inference from a non-stationary unknown process using statistical feature-based slow feature analysis
Kieran S. Owens, Masako Tamaki, Ben D. Fulcher
A Probability Model for Pentagonal Prism Dice Rolls
Paul R. Hurst, J. Naleo Hyde
Geometry-native machine learning reconstruction of DSMC moment fields with support monitoring
Ehsan Roohi
Multivariate amplitude analysis of the cascade particle decays based on the Nearest Neighbors fitting
I. V. Yeletskikh, A. O. Vasyukov
The geometry of uncertainty decomposition in profile-likelihood fits
Rafael Coelho Lopes de Sá