论文标题

星际化学模型中的持续振荡

Sustained oscillations in Interstellar chemistry models

论文作者

Roueff, Evelyne, Bourlot, Jacques Le

论文摘要

星际化学模型中的非线性行为已确认已有25年了。不同的机制解释了以气体电离度为特征在稳态下多个固定点的可能性。化学振荡也是非线性化学模型的自然行为。我们研究在哪些条件下可以自发持续的化学振荡,以及这种振荡的发生,导致或淬灭这种振荡。方法。众所周知的普通微分方程(ODE)积分器VODE用于探索深色星际云的气相化学模型中的初始条件和参数空间。我们记得,在固定温度条件下,各种化学丰度的时间演变取决于宇宙电离速率NH/ζ比的密度。我们还报告了有限但定义明确的控制参数范围的天然持续振荡的发生。振荡周期在星际过程的特征时间尺度范围内,并可能导致时间依赖模型的壮观共振。储层物种(C,CO,NH3,...)振荡振幅通常小于两个因子。但是,对于低丰度物种,这些幅度达到了十到千的倍数,例如HCN,ND3,可能在诊断目的中起关键作用。负责振荡的机制与氮的化学紧密相关,并且需要在多脱氧过程中发现的较长的反应链。

Non-linear behavior in interstellar chemical models has been recognized for 25 years now. Different mechanisms account for the possibility of multiple fixed-points at steady state, characterized by the ionization degree of the gas. Chemical oscillations are also a natural behaviour of non-linear chemical models. We study under which conditions spontaneous sustained chemical oscillations are possible, and what kind of biffurcations lead to, or quench, the occurrence of such oscillations. Methods. The well known Ordinary Differential Equations (ODE) integrator VODE is used to explore initial conditions and parameter space in a gas phase chemical model of a dark interstellar cloud. We recall that the time evolution of the various chemical abundances under fixed temperature conditions depends on the density over cosmic ionization rate nH/ζ ratio. We also report the occurrence of naturally sustained oscillations for a limited but well defined range of control parameters. The period of oscillations is within the range of characteristic time scales of interstellar processes and could lead to spectacular resonances in time dependent models. Reservoir species (C, CO, NH3, ...) oscillation amplitudes are generally less than a factor two. However, these amplitudes reach a factor ten to thousand for low abundance species, e.g. HCN, ND3, that may play a key role for diagnostic purposes.The mechanism responsible for oscillations is tightly linked to the chemistry of nitrogen, and requires long chains of reactions such as found in multi-deuteration processes.

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