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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Non-Hermitian Hamiltonians with real eigenvalues coupled to electric fields: From the time-independent to the time-dependent quantum mechanical formulation
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Non-Hermitian Hamiltonians with real eigenvalues coupled to electric fields: From the time-independent to the time-dependent quantum mechanical formulation

机译:具有与电场耦合的实际特征值的非埃尔米特哈密顿量:从时间无关到时间依赖性量子力学公式

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We provide a reviewlike introduction to the quantum mechanical formalism related to non-Hermitian Hamiltonian systems with real eigenvalues. Starting with the time-independent framework, we explain how to determine an appropriate domain of a non-Hermitian Hamiltonian and pay particular attention to the role played by PJ symmetry and pseudo-Hermiticity. We discuss the time evolution of such systems having in particular the question in mind of how to couple consistently an electric field to pseudo-Hermitian Hamiltonians. We illustrate the general formalism with three explicit examples: (i) the generalized Swanson Hamiltonians, which constitute non-Hermitian extensions of anharmonic oscillators, (ii) the spiked harmonic oscillator, which exhibits explicit super-symmetry, and (iii) the -x(4)-potential, which serves as a toy model for the quantum field theoretical phi(4)-theory.
机译:我们对与具有真实特征值的非埃尔米特哈密顿系统有关的量子力学形式主义进行了评论般的介绍。从与时间无关的框架开始,我们解释了如何确定非Hermitian哈密顿量的适当域,并特别注意了PJ对称性和伪Hermiticity所起的作用。我们讨论此类系统的时间演变,尤其要考虑到如何始终如一地将电场耦合到伪埃尔米特哈密顿量的问题。我们用三个明确的例子来说明一般形式主义:(i)广义的Swanson哈密顿量,它构成非谐振荡器的非厄密扩展,(ii)尖峰谐波振荡器,它表现出明显的超对称性,以及(iii)-x (4)势,它是量子场理论phi(4)-理论的玩具模型。

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