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Self-adjointness of the two-dimensional massless Dirac Hamiltonian and vacuum polarization effects in the background of a singular magnetic vortex

机译:奇异磁涡旋背景下二维无质量狄拉克哈密顿量的自伴和真空极化效应

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A massless spinor field is quantized in the background of a singular static magnetic Vortex in 2 + I-dimensional space-time. The method of self-adjoint extensions is employed to define the most general set of physically acceptable boundary conditions at the location of the vortex. Under these conditions, all effects of polarization of the massless fermionic vacuum in the vortex background are determined. Absence of anomaly is demonstrated, and patterns of both parity and chiral symmetry breaking are discussed. (C) 2000 Academic Press. [References: 45]
机译:无质量的自旋场在2 + I维时空中的奇异静态磁涡旋的背景中被量化。自伴扩展的方法被用来在旋涡的位置定义最通用的一组物理上可接受的边界条件。在这些条件下,确定了涡旋本底中无质量的铁离子真空的极化作用。证明了不存在异常,并讨论了奇偶校验和手性对称破坏的模式。 (C)2000年学术出版社。 [参考:45]

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