论文标题

基于半导体的电子飞盘:对最近的进度进行审查,数值建模加速

Semiconductor-based electron flying qubits: Review on recent progress accelerated by numerical modelling

论文作者

Edlbauer, Hermann, Wang, Junliang, Crozes, Thierry, Perrier, Pierre, Ouacel, Seddik, Geffroy, Clément, Georgiou, Giorgos, Chatzikyriakou, Eleni, Lacerda-Santos, Antonio, Waintal, Xavier, Glattli, D. Christian, Roulleau, Preden, Nath, Jayshankar, Kataoka, Masaya, Splettstoesser, Janine, Acciai, Matteo, Figueira, Maria Cecilia da Silva, Öztas, Kemal, Trellakis, Alex, Grange, Thomas, Yevtushenko, Oleg M., Birner, Stefan, Bäuerle, Christopher

论文摘要

半导体纳米级设备中的电荷操纵进度开辟了一条新型的途径,以实现单个电子的飞行量子。在本综述中,我们介绍了这些电子飞盘的概念,讨论它们最有希望的实现,并显示数值模拟如何适用于加速实验性开发周期。在应对学术界和量子企业目前面临的飞行Qubits的技术挑战时,我们强调了跨学科合作在推动新兴量子行业前进方面的相关性。该评论包括两个主要部分: 通向电子飞行Qubit的途径:我们解决了基于GAAS的设备中的单电子传输的三个路线,该途径着重于表面声波,来自量子点泵和Levitons的热电子发射。对于每种方法,我们都会讨论最新的实验结果,并指出数值模拟如何促进工程电子飞行Qubit。 量子设备的数值建模:我们回顾了制造飞盘所需的全部数值模拟堆栈。选择适当的模型,详细说明了基本量子机械模拟的示例。我们讨论开源(Kwant)和商业(Nextnano)平台的应用,以建模飞行盘。讨论指出了软件工具在设计用于高效操作的量子设备的巨大相关性。

The progress of charge manipulation in semiconductor-based nanoscale devices opened up a novel route to realise a flying qubit with a single electron. In the present review, we introduce the concept of these electron flying qubits, discuss their most promising realisations and show how numerical simulations are applicable to accelerate experimental development cycles. Addressing the technological challenges of flying qubits that are currently faced by academia and quantum enterprises, we underline the relevance of interdisciplinary cooperation to move emerging quantum industry forward. The review consists of two main sections: Pathways towards the electron flying qubit: We address three routes of single-electron transport in GaAs-based devices focusing on surface acoustic waves, hot-electron emission from quantum dot pumps and Levitons. For each approach, we discuss latest experimental results and point out how numerical simulations facilitate engineering the electron flying qubit. Numerical modelling of quantum devices: We review the full stack of numerical simulations needed for fabrication of the flying qubits. Choosing appropriate models, examples of basic quantum mechanical simulations are explained in detail. We discuss applications of open-source (KWANT) and the commercial (nextnano) platforms for modelling the flying qubits. The discussion points out the large relevance of software tools to design quantum devices tailored for efficient operation.

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