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Method of Laser Mode Selection Based on Silicon Micro F-P Cavity

机译:基于硅微F-P腔的激光模式选择方法

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摘要

The F-P cavity is the main structure of many optical components which relate to wavelength. From the research of micro-machine F-P cavity based on MEMS technology , we can obtain basic method and technical process of many kinds of MOEMS components for mode selection. In this article, basic structure and basic principle of silicon micro-machine F-P cavity are described. Influence of optical characteristics of the two mirrors on the F-P cavity property is analyzed, including influence of the reflectance of the two mirrors on the insertion loss and working range, the relationship between the F-P cavity length and the mode selection. A kind of method of laser mode selection based on silicon micro-machine F-P cavity is introduced. Through the movement of the elastic membrane as the upper mirror, the cavity length is adjusted, then the optical length of fixing wavelength is changed, the phase difference of different beams is varied, the reflectivity of micro-machine F-P Cavity is changed, so the method of laser mode selection is realized. The experimental process is expatiated in detail. It has advantages of minuteness volume, small insertion loss, high adjustment precision. The method of laser mode selection based on silicon micro-machine F-P cavity has laid firm foundation for the future research of laser mode selection.
机译:F-P腔是许多与波长有关的光学组件的主要结构。通过对基于MEMS技术的微机F-P腔的研究,我们可以得到多种MOEMS组件进行模式选择的基本方法和工艺过程。本文介绍了硅微机F-P腔的基本结构和基本原理。分析了两个反射镜的光学特性对F-P腔特性的影响,包括两个反射镜的反射率对插入损耗和工作范围的影响,以及F-P腔长度与模式选择之间的关系。介绍了一种基于硅微机F-P腔的激光模式选择方法。通过弹性膜作为上镜的移动,调节腔长,然后改变固定波长的光学长度,改变不同光束的相位差,改变微机FP腔的反射率,因此实现了激光模式选择的方法。详细阐述了实验过程。具有体积小,插入损耗小,调节精度高的优点。基于硅微机F-P腔的激光模式选择方法为未来激光模式选择研究奠定了坚实的基础。

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