论文标题

观察2D Cherenkov辐射

Observation of 2D Cherenkov radiation

论文作者

Adiv, Yuval, Hu, Hao, Tsesses, Shai, Dahan, Raphael, Wang, Kangpeng, Kurman, Yaniv, Gorlach, Alexey, Chen, Hongsheng, Lin, Xiao, Bartal, Guy, Kaminer, Ido

论文摘要

在80多年的研究中,自由电子辐射现象(例如Cherenkov辐射)的常规描述一直保持不变:经典的三维电磁波。有趣的是,在降低的维度中,预测自由电子辐射的特性从根本上改变。在这里,我们介绍了Cherenkov表面波的第一个观察结果,其中自由电子在二维中散发出狭窄的带宽光子准粒子。效应的低维和狭窄的带宽使能够通过电子能量损失光谱鉴定量化的排放事件。我们的结果支持了最近的理论预测,即自由电子并不总是会发出经典的光,而可能与它们发出的光子纠缠在一起。二维Cherenkov的相互作用在两个数量级上实现了比以往任何时候都大的数量级的量子耦合强度,从而首次使用自由电子来达到单电子耦合的相互作用状态。我们的发现为自由电子量子光学元件中以前未开发的现象铺平了道路,从而促进了预示的Fock态的明亮,基于自由电子的量子发射器。

For over 80 years of research, the conventional description of free-electron radiation phenomena, such as Cherenkov radiation, has remained unchanged: classical three-dimensional electromagnetic waves. Interestingly, in reduced dimensionality, the properties of free-electron radiation are predicted to fundamentally change. Here, we present the first observation of Cherenkov surface waves, wherein free electrons emit narrow-bandwidth photonic quasiparticles propagating in two-dimensions. The low dimensionality and narrow bandwidth of the effect enable to identify quantized emission events through electron energy loss spectroscopy. Our results support the recent theoretical prediction that free electrons do not always emit classical light and can instead become entangled with the photons they emit. The two-dimensional Cherenkov interaction achieves quantum coupling strengths over two orders of magnitude larger than ever reported, reaching the single-electron-single-photon interaction regime for the first time with free electrons. Our findings pave the way to previously unexplored phenomena in free-electron quantum optics, facilitating bright, free-electron-based quantum emitters of heralded Fock states.

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