论文标题

低速度最受欢迎的过渡辐射

Low-velocity-favored transition radiation

论文作者

Chen, Jialin, Chen, Ruoxi, Gong, Zheng, Hu, Hao, Yang, Yi, Zhang, Xinyan, Wang, Chan, Kaminer, Ido, Chen, Hongsheng, Zhang, Baile, Lin, Xiao

论文摘要

当带电粒子通过光学界面穿透时,光子排放出现 - 一种称为过渡辐射的现象。过渡辐射对基本物理学至关重要,使许多应用程序从高能粒子识别到新的光源。过渡辐射中的经验法则是,辐射强度通常随粒子速度V而降低。结果,在实践中,低能颗粒不受青睐。在这里,我们发现存在存在从极低速度(例如V/C <0.001)的颗粒的过渡辐射表现出与高能量颗粒(例如V/C = 0.999)的强度相当的强度,其中C是自由空间的光速。可比的辐射强度意味着低能颗粒的光子提取效率极高,比高能量颗粒大的八个数量级。这种低速最受欢迎的过渡辐射的异国情调现象源于埃普西隆 - 纳尔 - 零材料中的费雷尔·贝尔曼模式的激发。我们的发现可能为基于低能量电子和超出标准模型颗粒的专用检测器设计的集成光源设计提供了有希望的途径。

When a charged particle penetrates through an optical interface, photon emissions emerge - a phenomenon known as transition radiation. Being paramount to fundamental physics, transition radiation has enabled many applications from high-energy particle identification to novel light sources. A rule of thumb in transition radiation is that the radiation intensity generally decreases with the particle velocity v; as a result, low-energy particles are not favored in practice. Here we find that there exist situations where transition radiation from particles with extremely low velocities (e.g. v/c<0.001) exhibits comparable intensity as that from high-energy particles (e.g. v/c=0.999), where c is light speed in free space. The comparable radiation intensity implies an extremely high photon extraction efficiency from low-energy particles, up to eight orders of magnitude larger than that from high-energy particles. This exotic phenomenon of low-velocity-favored transition radiation originates from the excitation of Ferrell-Berreman modes in epsilon-near-zero materials. Our findings may provide a promising route towards the design of integrated light sources based on low-energy electrons and specialized detectors for beyond-standard-model particles.

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