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首页> 外文期刊>Physical Review, B. Condensed Matter >Double-occupancy errors, adiabaticity, and entanglement of spin qubits in quantum dots - art. no. 085311
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Double-occupancy errors, adiabaticity, and entanglement of spin qubits in quantum dots - art. no. 085311

机译:量子点中双占位误差,绝热性和自旋量子位的纠缠-艺术。没有。 085311

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摘要

Quantum gates that temporarily increase singlet-triplet splitting in order to swap electronic spins in coupled quantum dots lead inevitably to a finite double-occupancy probability for both dots. By solving the time-dependent Schrodinger equation for a coupled dot model, we demonstrate that this does not necessarily lead to quantum computation errors, Instead. the coupled dot ground state evolves quasiadiabatically for typical system parameters so that the double-occupancy probability at the completion of swapping is negligibly small. We introduce a measure of entanglement that explicitly takes into account the possibilty of double occupancies and provides a necessary and sufficient criterion for entangled states. [References: 18]
机译:为了交换耦合量子点中的电子自旋,临时增加单重态-三重态分裂的量子门不可避免地导致两个点的有限双占概率。通过求解耦合点模型的时间相关Schrodinger方程,我们证明了这不一定会导致量子计算错误。对于典型的系统参数,耦合点的基态近似绝热地演化,因此,交换完成时的双重占用概率很小,可以忽略不计。我们引入了一种纠缠度量,它明确考虑了双重占位的可能性,并为纠缠态提供了必要和充分的标准。 [参考:18]

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