论文标题

喷气发动机,形成,繁殖和粒子加速的持续奥秘:是否通过实验解决了它们?

Persistent mysteries of jet engines, formation, propagation, and particle acceleration: have they been addressed experimentally?

论文作者

Blackman, Eric G., Lebedev, Sergey V.

论文摘要

天体物理喷气机的物理学可以分为三个机制:(i)发动机和发射(ii)传播和准直,(iii)耗散和颗粒加速度。由于天体物理喷气机包含大量尺度和现象,因此实用性决定了大多数对喷气机的研究有意或无意间专注于其中一个制度,甚至在其中,一项工作也可能只是另一个工作的边界条件。我们首先讨论长期存在的持久谜团,这些奥秘与这些制度的物理学有关,而与研究它们的方法无关。这项讨论使与血浆天体物理学的边界更普遍地接触。在观察理论和模拟的同时,长期以来一直是贸易的主要工具,但实验室实验又如何呢?与JET相关的实验提供了有关数值和理论计算的特定原理,物理过程和基准的对照研究。我们讨论迄今为止在这些方面所做的事情。尽管实验确实有助于我们理解某些过程,原理概念的证明和基准的代码,但他们尚未独自解决一个天体物理的谜团。一个挑战是,到目前为止,用于喷气相关实验的实验工具通常不是最初为此目的设计的机器,也不是考虑到特定的天体物理谜团。这为思考未来平台的发展的不同方式提供了一个机会:从天体物理学的神秘开始,并建立一个实验来解决它。

The physics of astrophysical jets can be divided into three regimes: (i) engine and launch (ii) propagation and collimation, (iii) dissipation and particle acceleration. Since astrophysical jets comprise a huge range of scales and phenomena, practicality dictates that most studies of jets intentionally or inadvertently focus on one of these regimes, and even therein, one body of work may be simply boundary condition for another. We first discuss long standing persistent mysteries that pertain the physics of each of these regimes, independent of the method used to study them. This discussion makes contact with frontiers of plasma astrophysics more generally. While observations theory, and simulations, and have long been the main tools of the trade, what about laboratory experiments? Jet related experiments have offered controlled studies of specific principles, physical processes, and benchmarks for numerical and theoretical calculations. We discuss what has been done to date on these fronts. Although experiments have indeed helped us to understand certain processes, proof of principle concepts, and benchmarked codes, they have yet to solved an astrophysical jet mystery on their own. A challenge is that experimental tools used for jet-related experiments so far, are typically not machines originally designed for that purpose, or designed with specific astrophysical mysteries in mind. This presents an opportunity for a different way of thinking about the development of future platforms: start with the astrophysical mystery and build an experiment to address it.

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