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Phonon-mediated generation of quantum correlations between quantum dot qubits

机译:Phonon介导量子点QUBits之间的量子相关的产生

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We study the generation of quantum correlations between two excitonic quantum dot qubits due to their interaction with the same phonon environment. Such generation results from the fact that during the pure dephasing process at finite temperatures, each exciton becomes entangled with the phonon environment. We find that for a wide range of temperatures quantum correlations are created due to the interaction. The temperature-dependence of the level of correlations created displays a trade-off type behaviour; for small temperatures the phonon-induced distrubance of the qubit states is too small to lead to a distinct change of the two-qubit state, hence, the level of created correlations is small, while for large temperatures the pure dephasing is not accompanied by the creation of entanglement between the qubits and the environment, so the environment cannot mediate qubit-qubit quantum correlations.
机译:由于它们与相同的声子环境的互动,我们研究了两个激动力的量子点Qubits之间的量子相关性的产生。这种产生的结果来自于在有限温度下纯相位过程中,每个激子都与声子环境缠结。我们发现,对于广泛的温度,由于相互作用而产生量子相关性。创建的相关性水平的温度依赖性显示了折衷类型行为;对于小的温度来说,声子诱导的qubit态的分散太小,无法导致双量子态的不同变化,因此,创造的相关性水平很小,而对于大的温度纯粹的脱离不伴随着在Qubits和环境之间创建纠缠,因此环境无法调解Qubit-Qubit量子相关性。

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