传感用集成多波长激光源

G. Paré-Olivier, S. Ayotte, F. Costin, A. Babin, M. Morin, B. Filion, K. Bedard, Bilodeau Ghislain, É. Girard-Deschênes, P. Chrétien, Louis-Philippe Perron, Charles-André Davidson, D. D'amato, M. Laplante, J. Blanchet-Létourneau
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引用次数: 2

摘要

提出了一种紧凑的三激光光传感源。它基于庞德-德雷弗-霍尔方法的低噪声实现,包括高带宽光锁相环。安装在热电冷却器(TEC)上的三个半导体分布式反馈激光器的输出与微透镜耦合到硅光子学(SiP)芯片中,该芯片执行拍音检测和其他几个功能。该芯片包括相位调制器、可变光衰减器、多模干涉耦合器、变比抽头耦合器、集成光电二极管和光纤对接耦合器。金属化陶瓷与tec、激光器和SiP芯片之间的电气连接是通过线键实现的。所有这些组件都在一个35mm × 35mm的封装内,该封装由90个电气引脚和两个光纤辫子连接。一条小辫携带来自主从激光器的信号,另一条携带来自第二个从激光器的信号。这些引脚被焊接到一个带有微处理器的印刷电路板上,该微处理器控制和监控系统,以确保在波动的环境条件下稳定运行。这种高适应性的多激光源可以解决各种传感应用,需要跟踪多达三个具有高带宽的窄光谱特征。它用于模拟谐振光纤陀螺仪的光纤环形谐振器的传感。主激光以大于1mhz的环路带宽锁定在谐振器上。从激光器的偏移频率锁定到主激光器,环路带宽大于100mhz。这种高性能源结构紧凑、自动化、坚固,并可保持锁定数天。
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Integrated Multi-wavelength Laser Source for Sensing
A compact three-laser source for optical sensing is presented. It is based on a low-noise implementation of the Pound-Drever-Hall method and comprises high-bandwidth optical phase-locked loops. The outputs from three semiconductor distributed feedback lasers, mounted on thermo-electric coolers (TEC), are coupled with micro-lenses into a silicon photonics (SiP) chip that performs beat note detection and several other functions. The chip comprises phase modulators, variable optical attenuators, multi-mode-interference couplers, variable ratio tap couplers, integrated photodiodes and optical fiber butt-couplers. Electrical connections between a metallized ceramic and the TECs, lasers and SiP chip are achieved by wirebonds. All these components stand within a 35 mm by 35 mm package which is interfaced with 90 electrical pins and two fiber pigtails. One pigtail carries the signals from a master and slave lasers, while another carries that from a second slave laser. The pins are soldered to a printed circuit board featuring a micro-processor that controls and monitors the system to ensure stable operation over fluctuating environmental conditions. This highly adaptable multi-laser source can address various sensing applications requiring the tracking of up to three narrow spectral features with a high bandwidth. It is used to sense a fiber-based ring resonator emulating a resonant fiber optics gyroscope. The master laser is locked to the resonator with a loop bandwidth greater than 1 MHz. The slave lasers are offset frequency locked to the master laser with loop bandwidths greater than 100 MHz. This high performance source is compact, automated, robust, and remains locked for days.
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