论文标题

腔介导的电子光对

Cavity-mediated electron-photon pairs

论文作者

Feist, A., Huang, G., Arend, G., Yang, Y., Henke, J. -W., Raja, A. S., Kappert, F. J., Wang, R. N., Lourenço-Martins, H., Qiu, Z., Liu, J., Kfir, O., Kippenberg, T. J., Ropers, C.

论文摘要

推进量子信息,通信和感知取决于互补自由度的量子相关性的产生和控制。在这里,我们使用自由电子与基于光子芯片的光学微孔子的evanevencent真空场的相匹配的相互作用来证明电子对态态的制备。自发的非弹性散射会产生与能量迁移电子一致的腔内光子。利用这些对进行相关增强成像,我们通过一致的电子光谱法实现了两个幅度对比度改进的量化对比度。这种参数配对态制备将支持自由电子量子光学元件的未来发展,为量子增强成像,电子 - 光子纠缠以及预示的单电子和Fock-STATE光子源提供了途径。

Advancing quantum information, communication and sensing relies on the generation and control of quantum correlations in complementary degrees of freedom. Here, we demonstrate the preparation of electron-photon pair states using the phase-matched interaction of free electrons with the evanescent vacuum field of a photonic-chip-based optical microresonator. Spontaneous inelastic scattering produces intracavity photons coincident with energy-shifted electrons. Harnessing these pairs for correlation-enhanced imaging, we achieve a two-orders of magnitude contrast improvement in cavity-mode mapping by coincidence-gated electron spectroscopy. This parametric pair-state preparation will underpin the future development of free-electron quantum optics, providing a pathway to quantum-enhanced imaging, electron-photon entanglement, and heralded single-electron and Fock-state photon sources.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源