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Dynamical preparation of a steady off-diagonal long-range order state in the Hubbard model with a local non-Hermitian impurity

机译:具有局部非封闭杂质的船站模型中稳定非对角线长度顺序状态的动态准备

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The cooperation between non-Hermiticity and interaction brings about a lot of counterintuitive behaviors, which are impossible to exist in the framework of the Hermitian system. We study the effect of a non-Hermitian impurity on the Hubbard model in the context of η symmetry. We show that the non-Hermitian Hubbard Hamiltonian can respect a full real spectrum even if a local non-Hermitian impurity is applied to. The balance between dissipation of single fermion and on-site pair fluctuation results in a highest-order coalescing state with off-diagonal long-range order (ODLRO). Based on the characteristic of high-order EP, the critical non-Hermitian Hubbard model allows the generation of such a steady superconducting-like state through the time evolution from an arbitrary initial state, including the vacuum state. Remarkably, this dynamic scheme is insensitive to the on-site interaction and entirely independent of the locations of particle dissipation and pair fluctuation. Our results lay the groundwork for the dynamical generation of a steady ODLRO state through the critical non-Hermitian strongly correlated system.
机译:非气馁性和互动之间的合作带来了大量的反思行为,这是在赫米特人系统的框架中不可能存在的。我们在η对称性的背景下研究了非隐士杂质对船站模型的影响。我们表明,即使应用局部非封闭杂质杂质,非赫米特·哈巴德·哈菲尔顿哈密尔顿也可以尊重全频谱。单片FERMION和现场对波动的耗散之间的平衡导致具有离对角线远程顺序(ODLRO)的最级的聚结状态。基于高阶EP的特征,关键的非封闭型隆堡模型允许通过从任意初始状态的时间演变产生这种稳定超导状态,包括真空状态。值得注意的是,这种动态方案对现场的相互作用不敏感,并完全独立于粒子耗散和对波动的位置。我们的结果通过临界非封闭性强烈的系统奠定了稳定的Odlro状态的动态产生的基础。

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