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Singlet-triplet splitting in double quantum dots due to spin-orbit and hyperfine interactions

机译:由于自旋轨道和超精细相互作用,双量子点中的单重态 - 三重态分裂

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摘要

We analyze the low-energy spectrum of a two-electron double quantum dot under a potential bias in the presence of an external magnetic field. We focus on the regime of spin blockade, taking into account the spin-orbit interaction and hyperfine coupling of electron and nuclear spins. Starting from a model for two interacting electrons in a double dot, we derive an effective two-level Hamiltonian in the vicinity of an avoided crossing between singlet and triplet levels, which are coupled by the spin-orbit and hyperfine interactions. We evaluate the level splitting at the anticrossing, and show that it depends on a variety of parameters including the spin-orbit coupling strength, the orientation of the external magnetic field relative to an internal spin-orbit axis, the potential detuning of the dots, and the difference between hyperfine fields in the two dots. We provide a formula for the splitting in terms of the spin-orbit length, the hyperfine fields in the two dots, and the double dot parameters such as tunnel coupling and Coulomb energy. This formula should prove useful for extracting spin-orbit parameters from transport or charge sensing experiments in such systems. We identify a parameter regime where the spin-orbit and hyperfine terms can become of comparable strength, and discuss how this regime might be reached.
机译:在存在外部磁场的情况下,我们分析了在电位偏置下的双电子双量子点的低能谱。考虑到自旋轨道相互作用以及电子和核自旋的超精细耦合,我们将重点放在自旋封锁机制上。从双点中两个相互作用的电子的模型开始,我们在单重态和三重态能级之间避免的交叉点附近推导了有效的两能级哈密顿量,这是由自旋轨道和超精细相互作用耦合而成的。我们评估了反交叉处的能级分裂,并表明它取决于多种参数,包括自旋轨道耦合强度,外部磁场相对于内部自旋轨道轴的方向,点的潜在失谐,以及两个点中超精细场之间的差异。我们提供了一个自旋轨道长度,两个点中的超精细场以及双点参数(例如隧道耦合和库仑能量)进行分裂的公式。该公式应被证明可用于从此类系统中的传输或电荷感测实验中提取自旋轨道参数。我们确定了自旋轨道和超精细项可以变得具有可比强度的参数体制,并讨论了如何实现这种体制。

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