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Coherent interaction between free electrons and a photonic cavity

机译:自由电子与光子腔之间的相干相互作用

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Abstract Advances in the research of interactions between ultrafast free electrons and light have introduced a previously unknown kind of quantum matter, quantum free-electron wavepackets1–5. So far, studies of the interactions of cavity-confined light with quantum matter have focused on bound electron systems, such as atoms, quantum dots and quantum circuits, which are considerably limited by their fixed energy states, spectral range and selection rules. By contrast, quantum free-electron wavepackets have no such limits, but so far no experiment has shown the influence of a photonic cavity on quantum free-electron wavepackets. Here we develop a platform for multidimensional nanoscale imaging and spectroscopy of free-electron interactions with photonic cavities. We directly measure the cavity-photon lifetime via a coherent free-electron probe and observe an enhancement of more than an order of magnitude in the interaction strength relative to previous experiments of electron–photon interactions. Our free-electron probe resolves the spatiotemporal and energy–momentum information of the interaction. The quantum nature of the electrons is verified by spatially mapping Rabi oscillations of the electron spectrum. The interactions between free electrons and cavity photons could enable low-dose, ultrafast electron microscopy of soft matter or other beam-sensitive materials. Such interactions may also open paths towards using free electrons for quantum information processing and quantum sensing. Future studies could achieve free-electron strong coupling6,7, photon quantum state synthesis8 and quantum nonlinear phenomena such as cavity electro-optomechanics9.
机译:摘要超快自由电子和光相互作用研究推出了先前未知的量子物质,量子自由电子波波皮袋1-5。到目前为止,对具有量子物质的腔间密光的相互作用的研究专注于所结合的电子系统,例如原子,量子点和量子电路,其被其固定能量状态,光谱范围和选择规则相当受限。相比之下,量子自由电子波袋没有这样的限制,但到目前为止没有实验表明光子腔对量子自由电子波袋的影响。在这里,我们开发了一种与光子腔的自由电子相互作用的多维纳米级成像和光谱的平台。我们通过相干的自由电子探针直接测量腔光膜寿命,并观察相对于先前的电子 - 光子相互作用实验的相互作用强度的增强量增加。我们的自由电子探头解决了互动的时空和能量动量信息。通过空间地映射电子光谱的Rabi振荡来验证电子的量子性质。自由电子和空腔光子之间的相互作用可实现柔软物质或其他光束敏感材料的低剂量,超快电子显微镜。这种相互作用还可以打开用于使用自由电子进行量子信息处理和量子感测的路径。未来的研究可以实现自由电子强耦合6,7,光子量子态合成8和量子非线性现象,如腔电光机械9。

著录项

  • 来源
    《Nature 》 |2020年第7810期| 50-54| 共5页
  • 作者单位

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

    Technion – Israel Institute of Technology;

  • 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);美国《化学文摘》(CA);
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  • 正文语种 eng
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