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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Realizing PT-symmetric BEC subsystems in closed Hermitian systems
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Realizing PT-symmetric BEC subsystems in closed Hermitian systems

机译:在封闭的Hermitian系统中实现PT对称BEC子系统

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摘要

In open double-well Bose-Einstein condensate systems which balance in- and outfluxes of atoms and which are effectively described by a non-Hermitian.. -symmetric Hamiltonian PT-symmetric states have been shown to exist PT-symmetric states obey the combined parity and time reversal symmetry. We tackle the question of how the in- and outfluxes can be realized and introduce a Hermitian system in which two PT-symmetric subsystems are embedded. This system no longer requires an in- and outcoupling to and from the environment. We show that the subsystems still have PT-symmetric states. In addition we examine what degree of detail is necessary to correctly model the PT-symmetric properties and the bifurcation structure of such a system. We examine a four-mode matrix model and a system described by the full Gross-Pitaevskii equation in one dimension. We see that a simple matrix model correctly describes the qualitative properties of the system. For sufficiently isolated wells there is also quantitative agreement with the more advanced system descriptions. We also investigate which properties the wave functions of a system must fulfil to allow for PT-symmetric states. In particular the requirements for the phase difference between different parts of the system are examined.
机译:在开放式双井Bose-Einstein凝聚系统中,该系统平衡原子的流入和流出,并由非Hermitian有效地描述。-对称哈密顿量PT对称态已存在PT对称态服从组合奇偶性和时间反转对称。我们解决了如何实现流入和流出的问题,并介绍了一个Hermitian系统,其中嵌入了两个PT对称子系统。该系统不再需要与环境之间的内部和外部耦合。我们表明子系统仍然具有PT对称状态。另外,我们研究了正确建模PT对称特性和此类系统的分叉结构所需的详细程度。我们研究了一个四模式矩阵模型和一个由一维Gross-Pitaevskii方程描述的系统。我们看到一个简单的矩阵模型正确地描述了系统的定性性质。对于充分隔离的井,在数量上也与更高级的系统描述一致。我们还研究了系统的波函​​数必须满足哪些属性才能允许PT对称状态。特别是检查了系统不同部分之间的相位差要求。

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