Investigation of the Poloidal Magnetic Flux at the PF-3 Plasma Focus within the Framework of the Program of Laboratory Simulation of Astrophysical Jets

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, FLUIDS & PLASMAS
S. K. H. Auluck, V. I. Krauz, V. V. Myalton, A. M. Kharrasov
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Abstract

Astrophysical jets are collimated plasma outflows observed in diverse astrophysical settings covering seven decades of spatial scale and twenty decades of power, which, nevertheless, share many common features. This similarity over wide range of scales indicates a common core of physics underlying this phenomenon, leading to considerable interest in observational, theoretical and numerical studies. Laboratory astrophysics experiments for simulating astrophysical jets are premised on this common core of physics responsible for multi-scale similarity of jets remaining valid down to laboratory spatial scales of millimeters. Jets formed after the disassembly of the non-cylindrical Z-pinch formed in a plasma focus installation have recently been subjects of observational studies. They offer an important complementarity to the main lines of investigations in two respects. Firstly, the multi-faceted role of gravity, radiation, nuclear reactions and related astrophysics is eliminated retaining only a rapid implosion of a compact plasma object in a magnetohydrodynamic environment as a common feature. Secondly, observations can be made using techniques of laboratory plasma diagnostics. In this paper, we report preliminary results regarding presence of poloidal magnetic flux associated with the jets lasting long after the pinch disassembly. This is significant in the context of uncertainty regarding the origin of poloidal magnetic field postulated in several MHD models of astrophysical jet phenomena. Evidence indicating presence of a radial component of electric field suggests existence of plasma rotation as well. These results suggest that more refined experiments can provide insights into the astrophysical jetting phenomena not available from observational astronomy techniques.

Abstract Image

Abstract Image

在天体物理喷流实验室模拟计划框架内对 PF-3 等离子体焦点的极性磁通量的研究
摘要 天体物理喷流是在不同的天体物理环境中观测到的辐合等离子体外流,涵盖七十年的空间尺度和二十年的功率,但却具有许多共同特征。这种广泛尺度上的相似性表明这一现象的基础是一个共同的物理学核心,从而引起了人们对观测、理论和数值研究的极大兴趣。用于模拟天体物理喷流的实验室天体物理学实验的前提是,这一导致喷流多尺度相似性的共同物理核心在实验室空间尺度(毫米)内仍然有效。在等离子体焦点装置中形成的非圆柱形Z-pinch解体后形成的喷流最近成为观测研究的主题。它们在两个方面对主要研究方向提供了重要的补充。首先,消除了引力、辐射、核反应和相关天体物理学的多方面作用,只保留了紧凑等离子体在磁流体动力环境中快速内爆这一共同特征。其次,可以利用实验室等离子体诊断技术进行观测。在本文中,我们报告了在挤压分解后很长时间内存在与喷流相关的极磁通量的初步结果。这对于一些天体物理喷流现象的 MHD 模型所假设的极磁场起源的不确定性来说意义重大。电场径向分量的存在也表明等离子体旋转的存在。这些结果表明,更精细的实验可以提供观测天文学技术所无法提供的有关天体物理喷流现象的见解。
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
Plasma Physics Reports
Plasma Physics Reports 物理-物理:流体与等离子体
CiteScore
1.90
自引率
36.40%
发文量
104
审稿时长
4-8 weeks
期刊介绍: Plasma Physics Reports is a peer reviewed journal devoted to plasma physics. The journal covers the following topics: high-temperature plasma physics related to the problem of controlled nuclear fusion based on magnetic and inertial confinement; physics of cosmic plasma, including magnetosphere plasma, sun and stellar plasma, etc.; gas discharge plasma and plasma generated by laser and particle beams. The journal also publishes papers on such related topics as plasma electronics, generation of radiation in plasma, and plasma diagnostics. As well as other original communications, the journal publishes topical reviews and conference proceedings.
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