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用于等离子体约束的具有精确准对称性的磁场。

Magnetic Fields with Precise Quasisymmetry for Plasma Confinement.

作者信息

Landreman Matt, Paul Elizabeth

机构信息

Institute for Research in Electronics and Applied Physics, University of Maryland, College Park, Maryland 20742, USA.

Princeton University, Princeton, New Jersey 08544, USA.

出版信息

Phys Rev Lett. 2022 Jan 21;128(3):035001. doi: 10.1103/PhysRevLett.128.035001.

Abstract

Quasisymmetry is an unusual symmetry that can be present in toroidal magnetic fields, enabling the confinement of charged particles and plasma. Here it is shown that both quasiaxisymmetry and quasihelical symmetry can be achieved to a much higher precision than previously thought over a significant volume, resulting in exceptional confinement. For a 1 Tesla mean field far from axisymmetry (vacuum rotational transform >0.4), symmetry-breaking mode amplitudes throughout a volume of aspect ratio 6 can be made as small as the typical ∼50  μT geomagnetic field.

摘要

准对称性是一种特殊的对称性,可存在于环形磁场中,有助于约束带电粒子和等离子体。本文表明,准轴对称性和准螺旋对称性在相当大的体积范围内都能以比之前认为的更高精度实现,从而实现优异的约束效果。对于远离轴对称性的1特斯拉平均场(真空旋转变换>0.4),在纵横比为6的体积内,对称破缺模振幅可小至典型的约50 μT地磁场强度。

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