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Free-space wavelength-multiplexed optical scanner demonstration

机译:自由空间波长复用光学扫描仪演示

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摘要

Experimental demonstration of a no-moving-parts free-space wavelength-multiplexed optical scanner (W-MOS) is presented. With fast tunable lasers or optical filters and planar wavelength dispersive elements such as diffraction gratings, this microsecond-speed scanner enables large several-centimeter apertures for subdegree angular scans. The proposed W-MOS design incorporates a unique optical amplifier and variable optical attenuator combination that enables the calibration and modulation of the scanner response, leading to any desired scanned laser beam power shaping. The experimental setup uses a tunable laser centered at 1560 nm and a 600-grooves/mm blazed reflection grating to accomplish an angular scan of 12.92° as the source is tuned over an 80-nm bandwidth. The values for calculated maximum optical beam divergance, required wavelength resolution, beam-pointing accuracy, and mcasured scanner insertion loss are 1.076 mrad, 0.172 nm, 0.06 mrad, and 4.88 dB, respectively.
机译:提出了无移动部件自由空间波长多路复用光学扫描仪(W-MOS)的实验演示。借助快速可调激光器或滤光片以及诸如衍射光栅之类的平面波长色散元件,这款微秒级扫描仪可为亚度角扫描提供大到几厘米的孔径。提出的W-MOS设计结合了独特的光放大器和可变光衰减器组合,可对扫描仪响应进行校准和调制,从而实现任何所需的扫描激光束功率整形。实验装置使用了一个中心波长为1560 nm的可调激光器和一个600槽/ mm的闪耀反射光栅,可在80 nm带宽上调谐光源时完成12.92°的角度扫描。计算出的最大光束散度,所需的波长分辨率,光束指向精度和确保的扫描仪插入损耗的值分别为1.076 mrad,0.172 nm,0.06 mrad和4.88 dB。

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