两个光学合成器的1THz同步调谐

Rudolf Neuhaus, F. Rohde, E. Benkler, T. Puppe, C. Raab, Reinhard Unterreitmayer, A. Zach, H. Telle, J. Stuhler
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引用次数: 1

摘要

单频光合成器(SFOS)提供一个任意可调频率和相位的光场,该光场与参考信号相相干连接。理想情况下,它们以可调的方式将窄线宽频率稳定激光器的光谱分辨率与频率梳的广谱覆盖范围相结合。在最先进的SFOSs中,通过梳状线进行调谐需要梳状线顺序切换,1,2这会带来诸如禁止频率间隙或强相位故障等问题的技术开销。传统的可调谐激光器在模式跳变发生之前,通常只能调谐到几十千兆赫。在这里,我们提出了一种新型的SFOSs,它依赖于一种具有条件反激的serrodyne技术,3在不侵入梳状发生器的情况下移动所使用的频率梳的载波频率。它采用了一种新的连续可调谐二极管激光器,可在集成激光二极管的全增益谱上调谐无模式跳变。我们研究了两个相同的SFOSs的调谐行为,共享一个共同的参考,通过比较其输出信号的相位。在此之前,我们在28.1 GHz范围内实现了相位稳定和无周跳的频率调谐,当共用一个梳状发生器时,最大零到峰值相位偏差为62 mrad4。使用新的连续可调谐激光器,SFOSs在近17800梳线(1太赫兹)上同步调谐。该方法的调谐范围可扩展到频率梳的全带宽和二极管激光器的110 nm无模式跳变调谐范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
1THz synchronous tuning of two optical synthesizers
Single-frequency optical synthesizers (SFOS) provide an optical field with arbitrarily adjustable frequency and phase which is phase-coherently linked to a reference signal. Ideally, they combine the spectral resolution of narrow linewidth frequency stabilized lasers with the broad spectral coverage of frequency combs in a tunable fashion. In state-of-the-art SFOSs tuning across comb lines requires comb line order switching,1, 2 which imposes technical overhead with problems like forbidden frequency gaps or strong phase glitches. Conventional tunable lasers often tune over only tens of GHz before mode-hops occur. Here, we present a novel type of SFOSs, which relies on a serrodyne technique with conditional flyback,3 shifting the carrier frequency of the employed frequency comb without an intrusion into the comb generator. It utilizes a new continuously tunable diode laser that tunes mode-hop-free across the full gain spectrum of the integrated laser diode. We investigate the tuning behavior of two identical SFOSs that share a common reference, by comparing the phases of their output signals. Previously, we achieved phase-stable and cycle-slip free frequency tuning over 28.1 GHz with a maximum zero-to-peak phase deviation of 62 mrad4 when sharing a common comb generator. With the new continuously tunable lasers, the SFOSs tune synchronously across nearly 17800 comb lines (1 THz). The tuning range in this approach can be extended to the full bandwidth of the frequency comb and the 110 nm mode-hop-free tuning range of the diode laser.
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