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辐射驱动双烧蚀前沿的磁特征

Magnetic Signatures of Radiation-Driven Double Ablation Fronts.

作者信息

Campbell P T, Walsh C A, Russell B K, Chittenden J P, Crilly A, Fiksel G, Nilson P M, Thomas A G R, Krushelnick K, Willingale L

机构信息

Gérard Mourou Center for Ultrafast Optical Science, University of Michigan, 2200 Bonisteel Boulevard, Ann Arbor, Michigan 48109, USA.

Blackett Laboratory, Imperial College, London SW7 2AZ, United Kingdom.

出版信息

Phys Rev Lett. 2020 Oct 2;125(14):145001. doi: 10.1103/PhysRevLett.125.145001.

Abstract

In experiments performed with the OMEGA EP laser system, magnetic field generation in double ablation fronts was observed. Proton radiography measured the strength, spatial profile, and temporal dynamics of self-generated magnetic fields as the target material was varied between plastic, aluminum, copper, and gold. Two distinct regions of magnetic field are generated in mid-Z targets-one produced by gradients from electron thermal transport and the second from radiation-driven gradients. Extended magnetohydrodynamic simulations including radiation transport reproduced key aspects of the experiment, including field generation and double ablation front formation.

摘要

在使用OMEGA EP激光系统进行的实验中,观察到了双烧蚀前沿中的磁场产生。质子射线照相术测量了自生磁场的强度、空间分布和时间动态,实验中靶材分别为塑料、铝、铜和金。中Z靶材中产生了两个不同的磁场区域,一个由电子热传输的梯度产生,另一个由辐射驱动的梯度产生。包括辐射传输在内的扩展磁流体动力学模拟再现了实验的关键方面,包括磁场产生和双烧蚀前沿的形成。

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