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Goldstone bosons in different PT-regimes of non-Hermitian scalar quantum field theories

机译:非Hermitian标量量子场论的不同PT体制中的Goldstone玻色子

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We study the interplay between spontaneously breaking global continuous and discrete antilinear symmetries in a newly proposed general class of non-Hermitian quantum field theories containing a mixture of complex and real scalar fields. We analyse the model for different types of global symmetry preserving and breaking vacua. In addition, the models are symmetric under various types of discrete antilinear symmetries composed out of nonstandard simultaneous charge conjugations, time-reversals and parity transformations; CPT. While the global symmetry governs the existence of massless Goldstone bosons, the discrete one controls the precise expression of the Goldstone bosons in terms of the original fields in the model and its physical regimes. We show that even when the CPT-symmetries are broken on the level of the action expanded around different types of vacua, the mass spectra might still be real when the symmetry is preserved at the tree approximation and the breaking only occurs at higher order. We discuss the parameter space of some of the models in the proposed class and identify physical regimes in which massless Goldstone bosons emerge when the vacuum spontaneously breaks the global symmetry or equivalently when the corresponding Noether currents are conserved. The physical regions are bounded by exceptional points in different ways. There exist special points in parameter space for which massless bosons may occur already before breaking the global symmetry. However, when the global symmetry is broken at these points they can no longer be distinguished from genuine Goldstone bosons.
机译:我们在新提出的包含复杂和实量标量场混合的非Hermitian量子场论的一般类中研究自发性打破全局连续和离散反线性对称性之间的相互作用。我们分析了不同类型的全局对称性保存和打破真空的模型。此外,这些模型在由非标准同时电荷共轭,时间反转和奇偶变换组成的各种类型的离散反对称对称下都是对称的。 CPT。全局对称性控制着无质量的戈德斯通玻色子的存在,而离散的则根据模型中的原始场及其物理状态来控制戈德斯通玻色子的精确表达。我们表明,即使CPT对称性在围绕不同类型的真空扩展的作用水平上被破坏,当对称性保持在树的近似值时,质谱可能仍然是真实的,并且破坏仅在更高阶发生。我们讨论了所提议的类别中某些模型的参数空间,并确定了当真空自发地打破全局对称性或当相应的Noether电流守恒时等效地出现无质量戈德斯通玻色子的物理状态。物理区域以不同的方式受到例外点的限制。参数空间中存在一些特殊点,在打破全局对称性之前,可能已经出现无质量玻色子。但是,当全局对称性在这些点被破坏时,它们将无法再与真正的戈德斯通玻色子区分开。

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