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The energy-level crossing behavior and quantum Fisher information in a quantum well with spin-orbit coupling

机译:用旋转轨道耦合的量子阱中的能量水平交叉行为和量子Fisher信息

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摘要

We study the energy-level crossing behavior in a two-dimensional quantum well with the Rashba and Dresselhaus spin-orbit couplings (SOCs). By mapping the SOC Hamiltonian onto an anisotropic Rabi model, we obtain the approximate ground state and its quantum Fisher information (QFI) via performing a unitary transformation. We find that the energy-level crossing can occur in the quantum well system within the available parameters rather than in cavity and circuit quantum eletrodynamics systems. Furthermore, the influence of two kinds of SOCs on the QFI is investigated and an intuitive explanation from the viewpoint of the stationary perturbation theory is given.
机译:我们使用Rashba和Tresselhaus旋转轨道联轴器(SoC)研究了二维量子中的能量水平交叉行为。通过将SoC Hamiltonian映射到一个各向异性的Rabi模型中,我们通过执行酉变换获得近似的地位和量子Fisher信息(QFI)。我们发现在可用参数内的量子阱系统中可能发生能量级交叉,而不是在空腔和电路量子电流电流系统中。此外,给出了两种SOC对QFI对QFI的影响,并给出了静止扰动理论的观点出发的直观的解释。

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