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Spectrum of a family of spin-orbit coupled Hamiltonians with singular perturbation

机译:具有奇异摄动的自旋轨道耦合哈密顿量的谱

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The present study is the first such attempt to examine rigorously and comprehensively the spectral properties of a three-dimensional ultracold atom when both the spin-orbit interaction and the Zeeman field are taken into account. The model operator is the Rashba spin-orbit coupled operator in dimension three. The self-adjoint extensions are constructed using the theory of singular perturbations, where regularized rank two perturbations describe spin-dependent contact interactions. The spectrum of self-adjoint extensions is investigated in detail laying emphasis on the effects due to spin-orbit coupling. When the spin-orbit-coupling strength is small enough, the asymptotics of eigenvalues is obtained. The conditions for the existence of eigenvalues above the threshold are discussed in particular.
机译:本研究是在同时考虑自旋轨道相互作用和塞曼场的情况下,严格而全面地研究三维超冷原子光谱特性的首次尝试。模型算子是三维中的Rashba自旋耦合算子。自伴扩展是使用奇异摄动理论构建的,其中正则化第二级摄动描述了自旋相关的接触相互作用。自伴扩展的频谱进行了详细研究,重点放在自旋轨道耦合产生的影响上。当自旋轨道耦合强度足够小时,获得特征值的渐近性。特别讨论了特征值高于阈值的存在条件。

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