首页> 外文期刊>Japanese Journal of Applied Physics. Part 1, Regular Papers, Brief Communications & Review Papers >Low-Cost Fiber Grating Laser Module Package Employing a Hyperbolic Fiber Microlens
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Low-Cost Fiber Grating Laser Module Package Employing a Hyperbolic Fiber Microlens

机译:采用双曲光纤微透镜的低成本光纤光栅激光模块封装

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摘要

In this study, we demonstrate that it is possible to fabricate a fiber grating external cavity laser (FGECL) module with a low cost while still maintaining a good performance using a low-cost antireflection (AR)-coated (5 x 10~(-3)) laser and a tapered hyperbolic-end fiber (THEF) microlens. Previously, high-performance FGECL modules have only been available by using a complicated AR-coated (1 x 10~(-5)) laser process that leads to a high packaging cost. Our FGECL consisted of a HR/AR-coated diode laser, a THEF microlens, and a fiber grating. The results showed that the FGECL module exhibits a side-mode suppression ratio (SMSR) higher than 44 dB, a higher output power of more than 2 mW, and a larger operation current range of over 50 mA. In addition, excellent wavelength stability and a low-penalty directly modulated 2.488 Gbit/s were also obtained for FGECL modules. The THEF microlens demonstrated up to 86% coupling efficiency for a laser with an aspect ratio of 1 : 1.5. Low-cost FGECL modules with good performance were achieved primarily owing to the THEF microlens having a high coupling efficiency (typically 75%) which enhanced the feedback power from the fiber grating external cavity to the HR/AR-coated laser compared with the currently available hemispherical microlens which has low coupling efficiency (typically 50%). Therefore, the packaged FGECL module is suitable for use in low cost 2.5 Gbit/s lightwave transmission systems.
机译:在这项研究中,我们证明了可以低成本制造光纤光栅外腔激光器(FGECL)模块,同时使用低成本减反射(AR)涂层(5 x 10〜(- 3))激光和锥形双曲末端光纤(THEF)微透镜。以前,高性能FGECL模块只能通过使用复杂的增透膜(1 x 10〜(-5))激光工艺来获得,这会导致高昂的封装成本。我们的FGECL包括一个带HR / AR涂层的二极管激光器,一个THEF微透镜和一个光纤光栅。结果表明,FGECL模块的侧模抑制比(SMSR)高于44 dB,输出功率高于2 mW,工作电流范围超过50 mA。此外,对于FGECL模块,还获得了出色的波长稳定性和低惩罚度的直接调制2.488 Gbit / s。 THEF微透镜对纵横比为1:1.5的激光器显示出高达86%的耦合效率。实现低成本,高性能的FGECL模块的主要原因是THEF微透镜具有较高的耦合效率(通常为75%),与现有技术相比,它提高了从光纤光栅外腔到HR / AR涂层激光器的反馈功率具有低耦合效率(通常为50%)的半球形微透镜。因此,封装的FGECL模块适用于低成本2.5 Gbit / s的光波传输系统。

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