Controlling photons in mesoscopic systems: Precision measurements in frequency combs and optomechanics

C. Wong
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Abstract

Recent advances in sub-wavelength nanoscale platforms have afforded the control of light from first principles, with impact to optoelectronics and high-density secure communications. In this talk I will highlight two coherent examples where emerging mesoscopic systems can make a difference. Firstly, I will report on chip-scale Kerr frequency comb oscillators, where we have recently observed one of the shortest (74-fs) pulse mode-locking till date (Figure 1a) [1]. The frequency comb dynamics, evolution and coherent nature will be described. The CMOS-compatible frequency combs [2-5], including solitary pulses, have potential to link the RF and optical domains with low phase noise, with implications to precision optical clocks and ultrashort pulse generation.
介观系统中的光子控制:频率梳和光力学的精密测量
亚波长纳米级平台的最新进展从第一性原理上提供了光的控制,对光电子学和高密度安全通信产生了影响。在这次演讲中,我将强调两个连贯的例子,说明新兴的介观系统可以带来不同。首先,我将报告芯片级克尔频率梳状振荡器,我们最近观察到迄今为止最短(74-fs)脉冲锁模之一(图1a)[1]。将描述频率梳的动态、演化和相干性质。与cmos兼容的频率梳[2-5],包括孤立脉冲,具有低相位噪声连接射频和光域的潜力,这对精密光学时钟和超短脉冲产生具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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