全息Bragg光栅的衍射特性及其应用

E. Tikhonov
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引用次数: 1

摘要

体相全息光栅上光衍射的布拉格特性被认为是其在许多经典和新型光学仪器中应用的基础。由于布拉格光栅的高角/光谱选择性,单色器可以在不应用输入/输出狭缝的情况下实现。由于3d衍射而增强的光谱色散提供了单模振荡的染料激光器,即使是纳秒泵浦。具有这种光栅的多色仪是在光栅色散平面上发散的“白光”光束中获得的。在光栅出口的两束衍射光束控制功率与光束交叉的简单透镜光学器件相结合,实现了可控空间分辨率的两束干涉仪。在空间频率上标定的角结上的光栅构成高精度的波长计。该光栅具有高度的角度选择性,可实现与现代地震仪相当灵敏度的光学振动传感器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diffraction feature and applications of holographic Bragg gratings
Bragg character of a light diffraction on volume phase holographic gratings is considered as the basic of their applications in a number of classical and new optical instruments. Owing to high angular/spectral selectivity of the Bragg grating monochromators can be realised without application of input/output slits. Strengthening of an spectral dispersion due to the 3D-diffraction provides a single-mode oscillation in dye lasers even with nanosecond pumping. The polychromator with a such grating is attained in divergent “white” light beam in a plane of a grating dispersion. Two diffracted beams controlled power on a grating exit in a combination with the simple lens optics for beam crossing implement a 2-beam interferometer with controlled spatial resolution. Calibrated on a spatial frequency the grating on a goniometric knot forms the high-precision wavelengthmeter. High angular selectivity of such grating allows to implement optical vibration sensor with sensitivity comparable with that at modern seismographer.
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