首页> 外文期刊>Physical Review, B. Condensed Matter >Nuclear-spin qubit dephasing time in the integer quantum Hall effect regime - art. no. 085313
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Nuclear-spin qubit dephasing time in the integer quantum Hall effect regime - art. no. 085313

机译:整数量子霍尔效应机制中的核自旋量子比特移相时间-艺术没有。 085313

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摘要

We report a theoretical estimate of the nuclear-spin dephasing time T-2 owing to the spin interaction with the two-dimensional electron gas, when the latter is in the integer quantum Hall state, in a two-dimensional heterojunction or quantum well at low temperature, and in large applied magnetic field. We argue that the leading mechanism of dephasing is due to the impurity potentials that influence the dynamics of the spin via virtual magnetic spin-exciton scattering. Implications of our results for implementation of nuclear spins as quantum bits (qubits) for quantum computing are discussed. [References: 36]
机译:我们报告了由于与二维电子气发生自旋相互作用而导致的核自旋相移时间T-2的理论估计,当二维电子气处于整数量子霍尔状态时,在二维异质结或量子阱中低温度,以及施加的大磁场。我们认为,移相的主要机制是由于杂质电势通过虚拟磁自激子散射影响了自旋的动力学。讨论了我们的结果对将核自旋实现为量子计算的量子位(qubit)的意义。 [参考:36]

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