GHz声表面波对飞行激子和单个激子的操纵

IF 4.2 Q2 QUANTUM SCIENCE & TECHNOLOGY
M. Yuan, K. Biermann, P. Santos
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引用次数: 1

摘要

量子通信网络的一个重要先决条件是芯片上单个粒子的转移和操纵,以及它们相互转化为单个光子以进行远程信息交换。GHz声波是在混合量子系统中实现这些功能的通用工具。特别是,由GHz表面声波(SAW)推动的飞行激子可以潜在地满足这一前提条件。在这篇文章中,我们回顾了最近在基于半导体的系统中应用GHz SAW实现飞行激子的工作。最重要的是,我们已经确定了合适的两能级中心来存储单个激子,从而形成单个激子量子位,并将它们相互转换为具有由GHz SAW泵浦决定的非常高发射率的单个光子。本文所涉及的工作为片上基于激子的量子位操作铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Manipulation of flying and single excitons by GHz surface acoustic waves
An important prerequisite for quantum communication networks is the transfer and manipulation of single particles on a chip as well as their interconversion to single photons for long-range information exchange. GHz acoustic waves are versatile tools for the implementation of these functionalities in hybrid quantum systems. In particular, flying excitons propelled by GHz surface acoustic waves (SAWs) can potentially satisfy this prerequisite. In this article, we review recent works on the application of GHz SAWs to realize flying excitons in semiconductor-based systems. Most importantly, we have identified suitable two-level centers for the storage of single excitons, thus forming single excitonic qubits, and interconverted them to single photons with a very high emission rate dictated by the GHz-SAW pumping. The work covered here paves the way for on-chip, exciton-based qubit manipulation.
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CiteScore
9.90
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0.00%
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