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Coherent and dissipative cavity magnonics

机译:相干和耗散的腔千禧

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摘要

Strong interactions between magnetic materials and electrodynamic cavities mix together spin and photon properties, producing unique hybridized behavior. The study of such coupled spin-photon systems, known as cavity magnonics, is motivated by the flexibility and controllability of these hybridized states for spintronic and quantum information technologies. In this Tutorial, we examine and compare both coherent and dissipative interactions in cavity magnonics. We begin with a familiar case study, the coupled harmonic oscillator, which provides insight into the unique characteristics of coherent and dissipative coupling. We then examine several canonical cavity-magnonic systems, highlighting the requirements for different coupling mechanisms, and conclude with recent applications of spin-photon hybridization, for example, the development of quantum transducers, memory architectures, isolators, and enhanced sensing.
机译:磁性材料和电动空腔之间的强相互作用混合在一起旋转和光子性质,产生独特的杂交行为。 这种耦合的旋转光子系统的研究称为腔氧化物,通过这些杂交状态用于旋转反应和量子信息技术的灵活性和可控性。 在本教程中,我们检查并比较腔千禧年的相干和耗散相互作用。 我们从熟悉的箱体研究开始,耦合谐波振荡器,它提供了洞察相干和耗散耦合的独特特性。 然后,我们检查几种规范腔 - 磁力系统,突出了不同耦合机制的要求,并在最近的旋转光子杂交应用中得出结论,例如,Quantum换能器,存储器架构,隔离器和增强的感测的开发。

著录项

  • 来源
    《Journal of Applied Physics》 |2021年第20期|201101.1-201101.27|共27页
  • 作者单位

    Department of Physics British Columbia Institute of Technology Burnaby British Columbia V5G 3H2 Canada;

    State Key Laboratory of Infrared Physics Shanghai Institute of Technical Physics Chinese Academy of Sciences Shanghai 200083 People's Republic of China;

    Department of Physics and Astronomy University of Manitoba Winnipeg Manitoba R3T 2N2 Canada;

    Department of Physics and Astronomy University of Manitoba Winnipeg Manitoba R3T 2N2 Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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