Stochastic analysis of chemical reactions in multi-component interacting systems at criticality

IF 1.8 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY EPL Pub Date : 2023-10-01 DOI:10.1209/0295-5075/acff15
Reda Tiani, Uwe C. Tauber
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Abstract

Abstract We numerically and analytically investigate the behavior of a non-equilibrium phase transition in the second Schlögl autocatalytic reaction scheme. Our model incorporates both an interaction-induced phase separation and a bifurcation in the reaction kinetics, with these critical lines coalescing at a bicritical point in the macroscopic limit. We construct a stochastic master equation for the reaction processes to account for the presence of mutual particle interactions in a thermodynamically consistent manner by imposing a generalized detailed balance condition, which leads to exponential corrections for the transition rates. In a non-spatially extended (zero-dimensional) setting, we treat the interactions in a mean-field approximation, and introduce a minimal model that encodes the physical behavior of the bicritical point and permits the exact evaluation of the anomalous scaling for the particle number fluctuations in the thermodynamic limit. We obtain that the system size scaling exponent for the particle number variance changes from at the standard non-interacting bifurcation to at the interacting bicritical point. The methodology developed here provides a generic route for the quantitative analysis of fluctuation effects in chemical reactions occurring in multi-component interacting systems.
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临界时多组分相互作用系统化学反应的随机分析
摘要本文用数值方法和解析方法研究了第二种Schlögl自催化反应方案中非平衡相变的行为。我们的模型结合了反应动力学中相互作用诱导的相分离和分岔,这些临界线在宏观极限的双临界点处合并。我们构建了反应过程的随机主方程,通过施加一个广义的详细平衡条件,以热力学一致的方式解释粒子相互作用的存在,这导致了跃迁速率的指数修正。在非空间扩展(零维)设置中,我们以平均场近似处理相互作用,并引入最小模型,该模型对双临界点的物理行为进行编码,并允许对热力学极限下粒子数波动的异常标度进行精确评估。得到了粒子数方差的系统尺寸标度指数从标准非相互作用分岔处到相互作用双临界点处的变化。本文开发的方法为定量分析多组分相互作用体系中化学反应的波动效应提供了一种通用途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
EPL
EPL 物理-物理:综合
CiteScore
3.30
自引率
5.60%
发文量
332
审稿时长
1.9 months
期刊介绍: General physics – physics of elementary particles and fields – nuclear physics – atomic, molecular and optical physics – classical areas of phenomenology – physics of gases, plasmas and electrical discharges – condensed matter – cross-disciplinary physics and related areas of science and technology. Letters submitted to EPL should contain new results, ideas, concepts, experimental methods, theoretical treatments, including those with application potential and be of broad interest and importance to one or several sections of the physics community. The presentation should satisfy the specialist, yet remain understandable to the researchers in other fields through a suitable, clearly written introduction and conclusion (if appropriate). EPL also publishes Comments on Letters previously published in the Journal.
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