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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Spontaneous breaking of permutation symmetry in pseudo-Hermitian quantum mechanics
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Spontaneous breaking of permutation symmetry in pseudo-Hermitian quantum mechanics

机译:伪Hermitian量子力学中置换对称性的自发破坏

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By adding an imaginary interacting term proportional to ip_1p_2 to the Hamiltonian of a free anisotropic planar oscillator, we construct a model which is described by the PT-pseudo-Hermitian Hamiltonian with the permutation symmetry of two dimensions. We prove that our model is equivalent to the Pais-Uhlenbeck oscillator and thus establish a relationship between our PT-pseudo-Hermitian system and the fourth-order derivative oscillator model. We also point out the spontaneous breaking of permutation symmetry which plays a crucial role in giving a real spectrum free of interchange of positive and negative energy levels in our model. Moreover, we find that the permutation symmetry of two dimensions in our Hamiltonian corresponds to the identity (not in magnitude but in attribute) of two different frequencies in the Pais-Uhlenbeck oscillator, and reveal that the unequal-frequency condition imposed as a prerequisite upon the Pais-Uhlenbeck oscillator can reasonably be explained as the spontaneous breaking of this identity.
机译:通过将与ip_1p_2成比例的虚相互作用项添加到自由各向异性平面振荡器的哈密顿量,我们构建了一个模型,该模型由PT-伪-厄米特哈密顿量表示,具有二维排列对称性。我们证明了我们的模型等效于Pais-Uhlenbeck振荡器,从而在我们的PT-伪-Hermitian系统和四阶导数振荡器模型之间建立了关系。我们还指出了排列对称性的自发破坏,在我们的模型中给出真实的,没有正负能级互换的光谱时,它起着至关重要的作用。此外,我们发现哈密顿量中的二维排列对称性对应于Pais-Uhlenbeck振荡器中两个不同频率的同一性(不是大小而是属性),并揭示了不等频率条件是Pais-Uhlenbeck振荡器可以合理地解释为这种身份的自发破坏。

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