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光子时间晶体中的放大发射和激光。

Amplified emission and lasing in photonic time crystals.

机构信息

Physics Department, Technion - Israel Institute of Technology, Haifa 32000, Israel.

Solid State Institute, Technion - Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Science. 2022 Jul 22;377(6604):425-428. doi: 10.1126/science.abo3324. Epub 2022 Jun 9.

Abstract

Photonic time crystals (PTCs), materials with a dielectric permittivity that is modulated periodically in time, offer new concepts in light manipulation. We study theoretically the emission of light from a radiation source placed inside a PTC and find that radiation corresponding to the momentum bandgap is exponentially amplified, whether initiated by a macroscopic source, an atom, or vacuum fluctuations, drawing the amplification energy from the modulation. The radiation linewidth becomes narrower with time, eventually becoming monochromatic in the middle of the bandgap, which enables us to propose the concept of nonresonant tunable PTC laser. Finally, we find that the spontaneous decay rate of an atom embedded in a PTC vanishes at the band edge because of the low density of photonic states.

摘要

光子时间晶体(PTC)是一种介电常数随时间周期性调制的材料,为光的操控提供了新的概念。我们从理论上研究了置于 PTC 中的辐射源的光发射,发现对应动量带隙的辐射会被指数放大,无论是由宏观源、原子还是真空涨落引发,其放大能量均来自于调制。辐射线宽随时间变窄,最终在带隙中间变得单色,这使我们能够提出非共振可调谐 PTC 激光的概念。最后,我们发现由于光子态密度较低,嵌入 PTC 中的原子的自发衰减率在带边处为零。

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