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Tunable laser using micromachined grating with continuous wavelength tuning

机译:使用具有连续波长调谐的微加工光栅的可调激光器

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This letter develops a method that is able to optimize the grating pivot position to obtain maximum continuous tuning range for a Littrow laser, and also verifies the method by implementation of a single-chip integrated laser using the microelectromechanical systems (MEMS) technology. The laser consists of a semiconductor gain chip, a microlens, and a MEMS blazed grating arranged in the Littrow configuration. The laser is integrated onto a single silicon chip while maintaining the ability of continuous tuning in a large range. It has a compact size of 2.0 mm x 1.5 mm x 0.6 mm, and has obtained a tuning range of 30.3 nm with a resolution of 0.03 nm/V-2, a maximum power of 0.4 dBm and a side mode suppression ratio of 26 dB. Other merits include fast tuning speed, improved mechanical/wavelength stability, batch fabrication, and low cost. (C) 2004 American Institute of Physics.
机译:这封信提出了一种方法,该方法能够优化光栅枢轴位置以获得Littrow激光器的最大连续调谐范围,并通过使用微机电系统(MEMS)技术实现单芯片集成激光器来验证该方法。激光器由一个半导体增益芯片,一个微透镜和一个以Littrow配置的MEMS闪耀光栅组成。激光器被集成到单个硅芯片上,同时保持了在大范围内连续调谐的能力。它具有2.0 mm x 1.5 mm x 0.6 mm的紧凑尺寸,并具有30.3 nm的调谐范围,分辨率为0.03 nm / V-2,最大功率为0.4 dBm,侧模抑制比为26 dB 。其他优点包括快速调谐速度,提高的机械/波长稳定性,批量制造和低成本。 (C)2004美国物理研究所。

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