60 nm Widely Tunable Three Section Slot Laser

IF 2.2 3区 工程技术 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Journal of Quantum Electronics Pub Date : 2023-09-25 DOI:10.1109/JQE.2023.3318588
Jack Mulcahy;John McCarthy;Frank H. Peters;Xing Dai
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Abstract

This paper presents a tunable single mode Dual-mirror Slotted Fabry Pérot (DSFP) laser with near 60 nm tuning of the wavelengths between 1530 nm to 1590 nm. The laser modes measured demonstrate high SMSR lasing exceeding 30 dB with SMSRs as high as 45 dB. The electrical tuning of the laser facilitates more than 20 nm of continuous 50 GHz channel spacing between 1545 nm and 1565 nm. Additional thermal tuning facilitates more than 40 nm of continuous 50 GHz channel spacing between 1540 nm and 1580 nm.
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60纳米宽可调谐三段槽激光器
本文提出了一种可调谐单模双反射镜开槽法布里p (DSFP)激光器,其波长在1530 ~ 1590 nm之间,可调谐至近60 nm。测量的激光模式显示出超过30 dB的高SMSR激光,SMSR高达45 dB。激光的电调谐有助于在1545 nm和1565 nm之间实现超过20 nm的连续50 GHz通道间距。额外的热调谐有助于在1540 nm和1580 nm之间的连续50 GHz通道间距超过40 nm。
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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来源期刊
IEEE Journal of Quantum Electronics
IEEE Journal of Quantum Electronics 工程技术-工程:电子与电气
CiteScore
4.70
自引率
4.00%
发文量
99
审稿时长
3.0 months
期刊介绍: The IEEE Journal of Quantum Electronics is dedicated to the publication of manuscripts reporting novel experimental or theoretical results in the broad field of the science and technology of quantum electronics. The Journal comprises original contributions, both regular papers and letters, describing significant advances in the understanding of quantum electronics phenomena or the demonstration of new devices, systems, or applications. Manuscripts reporting new developments in systems and applications must emphasize quantum electronics principles or devices. The scope of JQE encompasses the generation, propagation, detection, and application of coherent electromagnetic radiation having wavelengths below one millimeter (i.e., in the submillimeter, infrared, visible, ultraviolet, etc., regions). Whether the focus of a manuscript is a quantum-electronic device or phenomenon, the critical factor in the editorial review of a manuscript is the potential impact of the results presented on continuing research in the field or on advancing the technological base of quantum electronics.
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