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Coherent control of the dynamics of a single quantum-dot exciton qubit in a cavity

机译:腔中单个量子点激子量子位动力学的相干控制

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In this paper we demonstrate theoretically how to use an external laser field to control the population inversion of a single quantum dot exciton qubit in a nanocavity. We consider the Jaynes-Cummings model to describe the system, and the incoherent losses were taken into account by using Lindblad operators. We have demonstrated how to prepare the initial state in a superposition of the exciton in the ground state and the cavity in a coherent state. The effects of exciton-cavity detuning, the laser-cavity detunings, the pulse area, and losses over the qubit dynamics are analyzed. We also show how to use a continuous laser pumping in resonance with the cavity mode to sustain a coherent state inside the cavity, providing some protection to the qubit against cavity loss.
机译:在本文中,我们从理论上演示了如何使用外部激光场来控制纳米腔中单个量子点激子量子位的种群反转。我们考虑用Jaynes-Cummings模型来描述系统,并且使用Lindblad算子将非相干损耗考虑在内。我们已经展示了如何在基态的激子和相干的腔的叠加中准备初始状态。分析了激子-腔失谐,激光-腔失谐,脉冲面积和损耗对量子位动力学的影响。我们还展示了如何使用与腔模共振的连续激光泵浦来维持腔内部的相干状态,从而为量子位提供一定的保护以防止腔丢失。

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