一个单一的自由运行双梳MIXSEL快速和精确的距离测量

J. Nürnberg, C. Alfieri, D. Waldburger, L. Krüger, M. Golling, U. Keller
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摘要

科技领域的多外差技术在双梳光谱学或光探测与测距(LIDAR)等许多应用领域都具有无与伦比的精度[1-2]。双梳盘式半导体激光器(SDL)可以大大提高器件的复杂性、性能和成本。将垂直外腔面发射激光器(VECSEL)的有源半导体增益与半导体可饱和吸收镜(SESAM)的可饱和吸收器集成在相同的外延结构中,就得到了锁模集成外腔面发射激光器(MIXSEL)[3]。MIXSEL允许在一个简单的直腔中进行模型锁定。在两个腔内双折射晶体中,最初未极化的腔光束被偏振分离[4]。当光泵浦半导体芯片上的两个点时,双梳式MIXSEL发射两个正交极化光频梳(OFCs),脉冲重复率略有不同,可以自由调节(图1a)。共有腔导致两个ofc之间具有本质上高的相互相干性,使双梳MIXSEL成为双梳光谱[5]和其他可现场部署的多外差拍音技术的理想源。
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A Single Free-Running Dual-Comb MIXSEL for Fast and Precise Distance Measurements
Multiheterodyne techniques in science and technology promise unsurpassed precision in many fields of application such as dual-comb spectroscopy or light detection and ranging (LIDAR) [1–2]. Complexity, performance and cost can be greatly improved with dual-comb semiconductor disk lasers (SDL). Integration of the active semiconductor gain of a vertical exteral-cavity surface emitting laser (VECSEL) with the saturable absorber of a semiconductor saturable absorber mirror (SESAM) in the same epitaxial structure leads to the modelocked integrated external-cavity surface emitting laser (MIXSEL) [3]. The MIXSEL allows modelocking in a simple straight cavity. With two intracavity birefringent crystals, the initially unpolarized cavity beam is seperated by polarization [4]. When optically pumping two spots on the semiconductor chip, the dual-comb MIXSEL emits two orthogonally polarized optical frequency combs (OFCs) with a slight difference in pulse repetition rate which can be freely adjusted (Fig. 1a). The common cavity leads to an intrinsically high mutual coherence between the two OFCs, making the dual-comb MIXSEL the ideal source for dual-comb spectroscopy [5] and other field-deployable multiheterodyne beatnote techniques.
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