Study of magnetic reconnection at low-$\beta$ using laser-powered capacitor coils
H. Ji, L. Gao, G. Pomraning, K. Sakai, F. Guo, X. Li, A. Stanier, A., Milder, R.F. Follett, G. Fiksel, E.G. Blackman, A. Chien, S. Zhang

TL;DR
This paper presents the micro-MRX platform, a laser-powered experimental setup that enables detailed laboratory studies of magnetic reconnection, including electron acceleration and ion acoustic wave observations, under astrophysically relevant conditions.
Contribution
It introduces the micro-MRX platform using high-power lasers to study magnetic reconnection with novel measurements of electron acceleration and ion acoustic waves.
Findings
Direct measurement of accelerated electrons during reconnection
Observation of ion acoustic waves in the reconnection exhaust
Support from particle-in-cell simulations for electron acceleration mechanisms
Abstract
Magnetic reconnection is a ubiquitous fundamental process in space and astrophysical plasmas that rapidly converts magnetic energy into some combination of flow energy, thermal energy, and non-thermal energetic particles. Over the past decade, a new experimental platform has been developed to study magnetic reconnection using strong coil currents powered by high power lasers at low plasma beta, typical conditions under which reconnection is energetically important in astrophysics. KJ-class lasers were used to drive parallel currents to reconnect MG-level magnetic fields in a quasi-axisymmetric geometry, similar to the Magnetic Reconnection Experiment or MRX, and thus this platform is named micro-MRX. This presentation summarizes two major findings from micro-MRX: direct measurement of accelerated electrons and observation of ion acoustic waves during anti-parallel reconnection. The…
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Taxonomy
TopicsMagnetic confinement fusion research · Astro and Planetary Science · Parallel Computing and Optimization Techniques
