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Cherenkov Radiation Control via Self-accelerating Wave-packets

机译:通过自加速波包控制切伦科夫辐射

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摘要

Cherenkov radiation is a ubiquitous phenomenon in nature. It describes electromagnetic radiation from a charged particle moving in a medium with a uniform velocity larger than the phase velocity of light in the same medium. Such a picture is typically adopted in the investigation of traditional Cherenkov radiation as well as its counterparts in different branches of physics, including nonlinear optics, spintronics and plasmonics. In these cases, the radiation emitted spreads along a “cone”, making it impractical for most applications. Here, we employ a self-accelerating optical pump wave-packet to demonstrate controlled shaping of one type of generalized Cherenkov radiation - dispersive waves in optical fibers. We show that, by tuning the parameters of the wave-packet, the emitted waves can be judiciously compressed and focused at desired locations, paving the way to such control in any physical system.
机译:切伦科夫辐射是自然界中普遍存在的现象。它描述了来自带电粒子的电磁辐射,该带电粒子在介质中运动的均匀速度大于相同介质中光的相速度。通常在研究传统的契伦科夫辐射以及它在包括非线性光学,自旋电子学和等离激元学在内的不同物理学科中的辐射时,都会采用这种图像。在这些情况下,发出的辐射沿“圆锥”传播,因此对于大多数应用来说不切实际。在这里,我们采用自加速光泵浦波包来演示一种受控的广义Cherenkov辐射的整形-光纤中的色散波。我们显示出,通过调整波包的参数,可以明智地压缩发射的波并将其聚焦在所需的位置,从而为在任何物理系统中进行此类控制铺平了道路。

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