塞伯格-维滕理论中的超对称性:量子场论之窗

Sanne Vergouwen, Sebastian De Haro
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引用次数: 0

摘要

我们以塞伯格-维滕理论中的超对称性为案例,研究利用(超)对称性论证研究四维相互作用量子场论的本体论。超对称与双膨胀一起,是一种有助于弥合精确量子场论的本体论与其半经典极限之间差距的媒介。我们讨论了在任何耦合值下都存在的一类态,它们的质量、电荷、磁荷和自旋量子数等特性可以在低能下精确描述。低能理论最好呈现为一维复流形,配备有度量和其他结构:即低能空泡空间,由三个开放区域覆盖,可解释为宏观相。我们讨论了两种出现的情况:低能体系的出现和低能模型之间的出现,从而强调了空泡空间拓扑对这种出现情况的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supersymmetry in the Seiberg-Witten Theory: A Window into Quantum Field Theory
We take supersymmetry in the Seiberg-Witten theory as a case study of the uses of (super)symmetry arguments in studying the ontology of four-dimensional interacting quantum field theories. Together with a double expansion, supersymmetry is a via media that helps to bridge the gap between the ontologies of an exact quantum field theory and its semi-classical limit. We discuss a class of states that exist at any value of the coupling, and whose properties such as mass, electric and magnetic charges, and spin quantum numbers can be precisely characterised at low energies. The low-energy theory is best presented as a one-dimensional complex manifold, equipped with metric and other structures: namely, the space of low-energy vacua, covered by three open regions that are interpreted as macroscopic phases. We discuss two cases of emergence: the emergence of the low-energy regime and the emergence between models at low energies, thereby highlighting the significance of the topology of the space of vacua for such cases of emergence.
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