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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Two-laser dynamic nuclear polarization with semiconductor electrons: Feedback, suppressed fluctuations, and bistability near two-photon resonance
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Two-laser dynamic nuclear polarization with semiconductor electrons: Feedback, suppressed fluctuations, and bistability near two-photon resonance

机译:具有半导体电子的两激光动态核极化:反馈,抑制的波动以及双光子共振附近的双稳态

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摘要

Feedback control is a powerful tool to stabilize systems for which precision control is difficult to impose directly, such as the environment of an open quantum system. Reduction of noise from the environment is a major challenge on the road to harnessing delicate quantum effects such as superposition and entanglement. In particular, spin states of defects and quantum dots in semiconductors display promising coherence properties for future applications, often being limited by disturbance from disordered nuclear spins in their environment. Here we show how optical coherent population trapping (CPT) of the spin of localized semiconductor electrons stabilizes the surrounding nuclear spins via feedback control. We find distinct control regimes for different signs of laser detuning and examine the transition from an unpolarized, narrowed state to a polarized state possessing a bistability. The narrowing of the state protects the electron spin against dephasing and yields self-improving CPT. Our analysis is relevant for a variety of solid-state systems where hyperfine-induced dephasing is a limitation for using electron spin coherence.
机译:反馈控制是稳定难以直接施加精确控制的系统(例如开放量子系统的环境)的强大工具。在利用微妙的量子效应(例如叠加和纠缠)的道路上,减少来自环境的噪声是一项重大挑战。特别是,半导体中的缺陷和量子点的自旋态显示出有希望的相干性,以备将来应用,通常受环境中无序核自旋的干扰而受到限制。在这里,我们展示了局部半导体电子的自旋的光学相干粒子阱(CPT)如何通过反馈控制来稳定周围的核自旋。我们发现了针对激光失谐的不同信号的不同控制机制,并研究了从非偏振,变窄状态到具有双稳态的偏振状态的转变。状态的变窄可保护电子自旋免于移相并产生自改善的CPT。我们的分析与各种固态系统相关,在这些固态系统中,超精细诱导的相移是使用电子自旋相干的局限性。

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