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    • 86. 发明授权
    • Optical cavity systems
    • 光腔系统
    • US4820042A
    • 1989-04-11
    • US108750
    • 1987-10-15
    • Richard L. Barger
    • Richard L. Barger
    • G01B11/27G01B11/26
    • G01B11/27
    • Method and apparatus for mode coupling a light beam into an optical cavity having a cavity axis, effect reflection of light of that beam with a mirror along a geometric ray originating laterally of the cavity axis. The mirror is rigidly interconnected with the cavity and is adjusted until the geometric ray coincides with the light beam. That geometric ray is retained in space while moving the optical cavity so that the cavity axis moves translatorily relative to the retained geometric ray, until the cavity axis coincides with the retained geometric ray and thereby with the light beam. Where an optical cavity is located in an oven, first temperature variations of a wall of that oven and second temperature variations of the cavity are sensed, and energization of the oven is controlled more rapidly in response to these first temperature variations, than in response to those second temperature variations.
    • 用于将光束模式耦合到具有空腔轴线的光学腔中的方法和装置,利用沿着腔轴线的侧向发出的几何光线,用反射镜来影响该光束的光的反射。 镜子与空腔刚性地互连,并被调节直到几何光线与光束重合。 在移动光学腔体的同时,该几何光线被保留在空间中,使得腔体轴线相对于所保留的几何光线平移地移动,直到空腔轴线与保留的几何光线以及从而与光束重合。 当光腔位于烘箱中时,感测到烘箱的壁的第一温度变化和空腔的第二温度变化,响应于这些第一温度变化而更快地控制烘箱的通电,而不是响应于 那些第二个温度变化。