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Synthesis
The search results for "math.GN" reference two distinct topics: one discusses the development of a versatile analog front-end for negative-ion gas and dual-phase liquid argon time projection chambers (TPCs), which are used in advanced physics experiments like dark matter searches and neutrino studies. The other result offers a practical guide to stochastic simulations of reaction-diffusion processes, providing an introduction to stochastic modeling techniques such as the Gillespie algorithm, aimed at users without prior experience in such simulations.
We report on the recent development of a versatile analog front-end compatible with a negative-ion $ΞΌ$-TPC for a directional dark matter search as well as a dual-phase, next-generation $\mathcal{O}$(10~kt) liquid argon TPC to study neutrino oscillations, nucleon decay, and astrophysical neutrinos. β¦
A practical introduction to stochastic modelling of reaction-diffusion processes is presented. No prior knowledge of stochastic simulations is assumed. The methods are explained using illustrative examples. The article starts with the classical Gillespie algorithm for the stochastic modelling of cheβ¦