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首页> 外文期刊>Optics Letters >Apodized holographic beam combiners for dense wavelength multiplexing based on Gaussian-beam interference
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Apodized holographic beam combiners for dense wavelength multiplexing based on Gaussian-beam interference

机译:基于高斯光束干涉的切趾全息合束器用于密集波长复用

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摘要

The brightness of high-power diode-laser systems can be significantly increased by using dense wavelength-multiplexing technologies. Among these technologies, state-of-the-art volume holographic gratings (VHGs) are suitable wavelength-selective filters for scaling the power of frequency-stabilized high-power lasers. The frequency spacing is limited due to the sidelobes of the spectral filter characteristic. In this Letter, we present the simulation results of novel apodized VHGs produced by Gaussian-beam interference. Apodized VHGs offer increased sidelobe suppression of up to 22 dB with conventional grating dimensions and, moreover, will improve the spectral brightness of dense wavelength-multiplexing systems by a factor of approximately six.
机译:通过使用密集的波长复用技术,可以显着提高大功率二极管激光器系统的亮度。在这些技术中,最先进的体积全息光栅(VHG)是合适的波长选择滤光片,用于缩放频率稳定的高功率激光器的功率。由于频谱滤波器特性的旁瓣,频率间隔受到限制。在这封信中,我们介绍了由高斯光束干扰产生的新型变迹的VHG的模拟结果。切趾的VHG在常规光栅尺寸下可提供高达22 dB的增强的旁瓣抑制,此外,还将把密集的波长多路复用系统的光谱亮度提高大约六倍。

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