DSpace Repository

A new Monte Carlo method for time-dependent neutrino radiation transport

Система будет остановлена для регулярного обслуживания. Пожалуйста, сохраните рабочие данные и выйдите из системы.

Show simple item record

dc.contributor.author Abdikamalov, Ernazar
dc.contributor.author Burrows, Adam
dc.contributor.author Ott, Christian
dc.contributor.author Loffler, Frank
dc.contributor.author O'Connor, Evan
dc.contributor.author Dolence, Joshua C.
dc.contributor.author Schnetter, Erik
dc.date.accessioned 2015-12-22T03:48:21Z
dc.date.available 2015-12-22T03:48:21Z
dc.date.issued 2012-07-11
dc.identifier.citation Abdikamalov Ernazar, Burrows Adam, Ott Christian, Loffler Frank, O'Connor Evan, Dolence Joshua C., Schnetter Erik; 2012; A new Monte Carlo method for time-dependent neutrino radiation transport; http://arxiv.org/find/all/1/all:+abdikamalov/0/1/0/all/0/1 ru_RU
dc.identifier.uri http://nur.nu.edu.kz/handle/123456789/917
dc.description.abstract Monte Carlo approaches to radiation transport have several attractive properties such as simplicity of implementation, high accuracy, and good parallel scaling. Moreover, Monte Carlo methods can handle complicated geometries and are relatively easy to extend to multiple spatial dimensions, which makes them potentially interesting in modeling complex multi-dimensional astrophysical phenomena such as core-collapse supernovae. The aim of this paper is to explore Monte Carlo methods for modeling neutrino transport in core-collapse supernovae. We generalize the implicit Monte Carlo photon transport scheme of Fleck & Cummings and gray discrete-diffusion scheme of Densmore et al. to energy-, time-, and velocity-dependent neutrino transport. Using our 1D spherically-symmetric implementation, we show that, similar to the photon transport case, the implicit scheme enables significantly larger timesteps compared with explicit time discretization, without sacrificing accuracy, while the discrete-diffusion method leads to significant speed-ups at high optical depth. Our results suggest that a combination of spectral, velocity-dependent, implicit Monte Carlo and discrete-diffusion Monte Carlo methods represents a robust approach for use in neutrino transport calculations in core-collapse supernovae. Our velocity-dependent scheme can easily be adapted to photon transport ru_RU
dc.language.iso en ru_RU
dc.subject Research Subject Categories::NATURAL SCIENCES::Physics ru_RU
dc.subject hydrodynamics ru_RU
dc.subject Neutrinos ru_RU
dc.subject Radiative Transfer ru_RU
dc.title A new Monte Carlo method for time-dependent neutrino radiation transport ru_RU
dc.type Article ru_RU


Files in this item

This item appears in the following Collection(s)

Show simple item record