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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >The in-phase mode selection of a high-power diode laser array by a talbot cavity with an amplitude compensator
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The in-phase mode selection of a high-power diode laser array by a talbot cavity with an amplitude compensator

机译:带有振幅补偿器的talbot腔对大功率二极管激光器阵列的同相模式选择

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摘要

The in-phase mode selection with the amplitude compensator at a high current (I > 20 A) was analyzed theoretically and achieved experimentally in an external Talbot cavity, of length L velence Z_(T)/4. The used linear array consisted of 49 wide-aperture diodes with a diode emitter aperture a velence 100 (mu)m and a center to center period d velence 200 (mu)m. Increasing the output radiation intensity in the far-field central lobe was demonstrated, and the power of the multi-lobes was 1.57 W without the amplitude compensator and then it concentrated on the single lobe was 0.96 W by inserting the amplitude compensator in the external cavity when the injection current was 25 A. The far-field divergence of the phase locked radiation was 1.80 mrad, and the spectral FWHM of the output radiation was suppressed from 1.7 nm to 0.15 nm.
机译:理论上分析了在大电流(I> 20 A)下使用幅度补偿器进行的同相模式选择,并在外部塔尔伯特腔中进行了实验,该腔的长度为L velence Z_(T)/ 4。所使用的线性阵列由49个宽孔径二极管组成,二极管的发射器孔径为velence 100μm,中心到中心周期dvelence 200μm。证明了增加远场中心瓣的输出辐射强度,并且在不使用振幅补偿器的情况下,多瓣的功率为1.57 W,然后通过将振幅补偿器插入外腔将其集中在单个瓣上的功率为0.96 W当注入电流为25 A时。锁相辐射的远场散度为1.80 mrad,输出辐射的光谱FWHM从1.7 nm抑制为0.15 nm。

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