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Entanglement of a laser-driven pair of two-level qubits via its phonon environment

机译:通过其声子环境纠缠激光驱动双层Qubits的纠缠

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The entanglement dynamics of a laser-pumped two-level quantum dot pair is investigated in the steady state. The closely spaced two-level emitters, embedded in a semiconductor substrate, interact with both the environmental vacuum modes of the electromagnetic field reservoir as well as with the lattice vibrational phonon thermostat. We have found that the entanglement among the pair's components is substantially enhanced due to the presence of the phonon subsystem. The reason is phonon-induced decay among the symmetrical and antisymmetrical two-qubit collective states and, consequently, the population of the latter one. This also means that through thermal phonon bath engineering one can access the subradiant two-particle cooperative state. (C) 2018 Optical Society of America.
机译:在稳定状态下研究了激光泵浦两级量子点对的缠结动态。 嵌入在半导体衬底中的紧密间隔的两级发射器,与电磁场储存器的环境真空模式以及晶格振动声子恒温器相互作用。 我们发现,由于声子子系统的存在,这对组件中的缠结基本上增强。 原因是声子诱导的对称和防逆二态两种集体国家之间的衰减,因此后者的人口。 这也意味着通过热敏弹性浴室工程,可以访问亚辐射的双粒子协作状态。 (c)2018年光学学会。

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