基于放大反馈的柔性可调谐双模半导体激光器

IF 1.8 3区 物理与天体物理 Q3 OPTICS Applied Physics B Pub Date : 2025-02-04 DOI:10.1007/s00340-024-08378-8
Huibin Chen, Zhenyu You, Kaize Xu
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引用次数: 0

摘要

我们提出并制作了一种基于光放大反馈的单片集成双模半导体激光器(DML),其中可调的光自注入反馈可以诱导双波长激光,亚毫米级的总腔长为微波源提供了通道。在保持半导体光放大器(SOA)注入电流恒定的情况下,对分布式反馈激光器(DFB)段注入不同的电流,分别实现了10 GHz和18 GHz不同范围的可调谐微波信号,大大简化了系统配置,降低了系统占地面积、功耗和成本。此外,通过特殊的双段半导体激光器注入电流方案,还可以实现固定波长间隔的全波长调谐。它为柔性和可调谐微波源提供了一种方便和低成本的光子解决方案。
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Flexibly tunable dual-mode semiconductor laser based on amplified feedback

We propose and fabricate a monolithically integrated dual-mode semiconductor laser (DML) based on optical amplified feedback, where the adjustable optical self-injection feedback could induce dual-wavelength lasing, and the sub-millimeter total cavity length provides access to be microwave source. When keeping the injection current of semiconductor optical amplifier (SOA) be constant, inject different current for the segment of distributed feedback laser (DFB), we have achieved tunable microwave signal with different ranges of 10 GHz and 18 GHz respectively, which significantly simplifies the system configuration and reduces the footprint, power consumption and cost. Besides, through a special current injection scheme for the two-segment semiconductor laser, whole wavelength tuning with fixed wavelength spacing can also be realized. It provides a convenient and low-cost photonic solution for flexible and tunable microwave sources.

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来源期刊
Applied Physics B
Applied Physics B 物理-光学
CiteScore
4.00
自引率
4.80%
发文量
202
审稿时长
3.0 months
期刊介绍: Features publication of experimental and theoretical investigations in applied physics Offers invited reviews in addition to regular papers Coverage includes laser physics, linear and nonlinear optics, ultrafast phenomena, photonic devices, optical and laser materials, quantum optics, laser spectroscopy of atoms, molecules and clusters, and more 94% of authors who answered a survey reported that they would definitely publish or probably publish in the journal again Publishing essential research results in two of the most important areas of applied physics, both Applied Physics sections figure among the top most cited journals in this field. In addition to regular papers Applied Physics B: Lasers and Optics features invited reviews. Fields of topical interest are covered by feature issues. The journal also includes a rapid communication section for the speedy publication of important and particularly interesting results.
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