论文标题
表面Dyakonov-Cherenkov辐射
Surface Dyakonov-Cherenkov Radiation
论文作者
论文摘要
工程材料技术的最新进展(例如光子晶体,超材料,等离子体学等)提供了控制Cherenkov辐射的宝贵工具。但是,在所有这些方法中,设计的材料仅与粒子速度相互作用以影响切伦科夫辐射,而粒子轨迹的影响通常可以忽略不计。在这里,我们报告了表面Dyakonov-Cherenkov辐射,即从迅速带电的粒子上移动在双重晶体上的迅速带电粒子的发射。这种新型的Cherenkov辐射非常容易受到粒子速度和轨迹的影响,例如当粒子轨迹落在特定方向附近时,我们会观察到急剧的辐射增强。此外,接近Cherenkov阈值,这种辐射增强的数量级可能比传统的Cherenkov探测器高的数量级高。这些不同的特性使我们能够同时确定紧凑型平台上粒子速度的幅度和方向。在这项工作中研究的表面Dyakonov-Cherenkov辐射不仅增加了粒子识别的新自由度,而且还提供了一种全dielectric途径,以构建具有增强灵敏度的紧凑型Cherenkov检测器。
Recent advances in engineered material technologies (e.g., photonic crystals, metamaterials, plasmonics, etc) provide valuable tools to control Cherenkov radiation. In all these approaches, however, the designed materials interact only with the particle velocity to affect Cherenkov radiation, while the influence of the particle trajectory is generally negligible. Here, we report on surface Dyakonov-Cherenkov radiation, i.e. the emission of directional Dyakonov surface waves from a swift charged particle moving atop a birefringent crystal. This new type of Cherenkov radiation is highly susceptible to both the particle velocity and trajectory, e.g. we observe a sharp radiation enhancement when the particle trajectory falls in the vicinity of a particular direction. Moreover, close to the Cherenkov threshold, such a radiation enhancement can be orders of magnitude higher than that obtained in traditional Cherenkov detectors. These distinct properties allow us to determine simultaneously the magnitude and direction of particle velocities on a compact platform. The surface Dyakonov-Cherenkov radiation studied in this work not only adds a new degree of freedom for particle identification, but also provides an all-dielectric route to construct compact Cherenkov detectors with enhanced sensitivity.