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首页> 外文期刊>The Astrophysical journal >POLARIZATION DIAGNOSTICS FOR COOL CORE CLUSTER EMISSION LINES
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POLARIZATION DIAGNOSTICS FOR COOL CORE CLUSTER EMISSION LINES

机译:冷却核心团簇发射线的极化诊断

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The nature of the interaction between low-excitation gas filaments at ~104?K, seen in optical line emission, and diffuse X-ray emitting coronal gas at ~107?K in the centers of galaxy clusters remains a puzzle. The presence of a strong, empirical correlation between the two gas phases is indicative of a fundamental relationship between them, though as yet of undetermined cause. The cooler filaments, originally thought to have condensed from the hot gas, could also arise from a merger or the disturbance of cool circumnuclear gas by nuclear activity. Here, we have searched for intrinsic line emission polarization in cool core galaxy clusters as a diagnostic of fundamental transport processes. Drawing on developments in solar astrophysics, direct energetic particle impact induced polarization holds the promise to definitively determine the role of collisional processes such as thermal conduction in the ISM physics of galaxy clusters, while providing insight into other highly anisotropic excitation mechanisms such as shocks, intense radiation fields, and suprathermal particles. Under certain physical conditions, theoretical calculations predict of the order of 10% polarization. Our observations of the filaments in four nearby cool core clusters place stringent upper limits ( 0.1%) on the presence of emission line polarization, requiring that if thermal conduction is operative, the thermal gradients are not in the saturated regime. This limit is consistent with theoretical models of the thermal structure of filament interfaces.
机译:在光线路发射中可以看到,在〜104?K处的低激发气体灯丝与在星系团中心的〜107?K中的扩散X射线发射冠状气体之间的相互作用的性质仍然令人困惑。尽管目前尚未确定原因,但两种气相之间存在强烈的经验相关性表明它们之间存在基本关系。最初被认为是从热气中凝结的较冷的灯丝,也可能是由于核活动引起的冷环核气体的合并或干扰而产生的。在这里,我们已经搜索了冷核星系团中的本征线发射极化,以作为基本传输过程的诊断。利用太阳天体物理学的发展,直接的高能粒子碰撞诱导的极化有望最终确定碰撞过程(例如热传导)在星系团的ISM物理学中的作用,同时提供对其他高度各向异性的激发机制(如冲击,强磁场)的见解辐射场和超热粒子。在某些物理条件下,理论计算可预测极化率为10%的数量级。我们对附近四个冷核簇中细丝的观察结果对发射线极化的存在设置了严格的上限(0.1%),这要求如果热传导有效,则热梯度不能处于饱和状态。此限制与灯丝界面热结构的理论模型一致。

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