Separating States in Astronomical Sources Using Hidden Markov Models: With a Case Study of Flaring and Quiescence on EV Lac

IF 4.7 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Monthly Notices of the Royal Astronomical Society Pub Date : 2024-09-06 DOI:10.1093/mnras/stae2082
Robert Zimmerman, David A van Dyk, Vinay L Kashyap, Aneta Siemiginowska
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Abstract

We present a new method to distinguish between different states (e.g., high and low, quiescent and flaring) in astronomical sources with count data. The method models the underlying physical process as latent variables following a continuous-space Markov chain that determines the expected Poisson counts in observed light curves in multiple passbands. For the underlying state process, we consider several autoregressive processes, yielding continuous-space hidden Markov models of varying complexity. Under these models, we can infer the state that the object is in at any given time. The continuous state predictions from these models are then dichotomized with the help of a finite mixture model to produce state classifications. We apply these techniques to X-ray data from the active dMe flare star EV Lac, splitting the data into quiescent and flaring states. We find that a first-order vector autoregressive process efficiently separates flaring from quiescence: flaring occurs over 30–40% of the observation durations, a well-defined persistent quiescent state can be identified, and the flaring state is characterized by higher plasma temperatures and emission measures.
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利用隐马尔可夫模型分离天文源的状态:以 EV Lac 上的耀斑和静止为案例研究
我们提出了一种新方法来区分天文源计数数据的不同状态(如高和低、静止和闪烁)。该方法将基本物理过程建模为一个连续空间马尔可夫链的潜变量,该连续空间马尔可夫链决定了多通带观测光曲线中的预期泊松计数。对于基本状态过程,我们考虑了几个自回归过程,从而得到复杂程度不同的连续空间隐马尔可夫模型。根据这些模型,我们可以推断出天体在任何给定时间内所处的状态。在有限混合模型的帮助下,这些模型的连续状态预测结果会被二分,从而产生状态分类。我们将这些技术应用于活跃的 dMe耀斑恒星 EV Lac 的 X 射线数据,将数据分为静态和耀斑状态。我们发现,一个一阶矢量自回归过程可以有效地将耀斑和静止状态区分开来:耀斑发生在 30-40% 的观测持续时间内,可以识别出一个定义明确的持续静止状态,而耀斑状态的特点是等离子体温度和发射测量值较高。
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来源期刊
CiteScore
9.10
自引率
37.50%
发文量
3198
审稿时长
3 months
期刊介绍: Monthly Notices of the Royal Astronomical Society is one of the world''s leading primary research journals in astronomy and astrophysics, as well as one of the longest established. It publishes the results of original research in positional and dynamical astronomy, astrophysics, radio astronomy, cosmology, space research and the design of astronomical instruments.
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