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基于非线性微腔的稳定超快激光器的演示。

Demonstration of a stable ultrafast laser based on a nonlinear microcavity.

机构信息

INRS-EMT, 1650 Blvd. Lionel Boulet, Varennes Québec, J3X 1S2 Canada.

出版信息

Nat Commun. 2012 Apr 3;3:765. doi: 10.1038/ncomms1762.

Abstract

Ultrashort pulsed lasers, operating through the phenomenon of mode-locking, have had a significant role in many facets of our society for 50 years, for example, in the way we exchange information, measure and diagnose diseases, process materials, and in many other applications. Recently, high-quality resonators have been exploited to demonstrate optical combs. The ability to phase-lock their modes would allow mode-locked lasers to benefit from their high optical spectral quality, helping to realize novel sources such as precision optical clocks for applications in metrology, telecommunication, microchip-computing, and many other areas. Here we demonstrate the first mode-locked laser based on a microcavity resonator. It operates via a new mode-locking method, which we term filter-driven four-wave mixing, and is based on a CMOS-compatible high quality factor microring resonator. It achieves stable self-starting oscillation with negligible amplitude noise at ultrahigh repetition rates, and spectral linewidths well below 130  kHz.

摘要

超短脉冲激光器通过锁模现象在我们的社会的许多方面都发挥了重要作用,例如在信息交换、疾病测量和诊断、材料处理以及许多其他应用中。最近,人们利用高质量的谐振器来展示光学梳。对其模式进行锁相的能力将使锁模激光器能够受益于其高光学光谱质量,有助于实现新型光源,如用于计量学、电信、微芯片计算和许多其他领域的精密光学时钟。在这里,我们展示了第一个基于微腔谐振器的锁模激光器。它通过一种新的锁模方法工作,我们称之为滤波驱动四波混频,并且基于与 CMOS 兼容的高品质因数微环谐振器。它在超高重复率下实现了稳定的自启动振荡,并且具有可忽略的幅度噪声和低于 130 kHz 的光谱线宽。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8081/3337978/a75e9339f112/ncomms1762-f1.jpg

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