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Single laser beam of spatial coherence from an array of GaAs lasers: Free‐running mode

机译:来自GaAs激光器阵列的空间相干单束激光:自由运行模式

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Spatially coherent radiation from a monolythic array of three GaAs lasers in a free‐running mode is reported. The lasers, with their mirror faces antireflection coated, are operated in an external optical cavity built of spherical lenses and plane mirrors. The spatially coherent beam formation makes use of the Fourier transformation property of the internal lenses. The transverse mode control is accomplished by a spatial filter. The optical cavity is similar to that used for the phase‐controlled mode of spatially coherent beam formation, which had been reported; only the spatial filters are different. The spatial filter in the free‐running mode controls the fields of the lasers to be in the lowest‐order transverse mode, but it does not control their phase angles. Random amplitude and phase variations of the longitudinal modes prevent the formation of a stationary interference waveform. In the far field (when restored by an external lens), the intensities of the lasers in the array are concentrated in a single laser beam of spatial coherence, without any grating lobes. The far‐field distribution is not influenced by the spacings among the lasers. The far‐field distribution of the laser array in the free‐running mode differs significantly from the interference pattern of the phase‐controlled mode. The modulation characteristics of the optical waveforms of the two modes are also quite different. This is because the modulation is related to the interaction of the spatial filter with the longitudinal modes of the laser array with the optical cavity. The modulation of the optical waveform of the free‐running mode is nonperiodic, confirming that the fluctuations of the optical fields of the lasers are random. Experiments were performed at room temperature using a monolythic array of three GaAs lasers. The far‐field distribution of the laser array and the optical waveform were investigated.
机译:报告了在自由运行模式下三个GaAs激光器的单片阵列的空间相干辐射。带有镜面防反射涂层的激光器在由球面透镜和平面镜构成的外部光学腔中工作。在空间上相干的光束形成利用了内部透镜的傅立叶变换特性。横向模式控制是通过空间滤波器实现的。光学腔类似于已报道的用于空间相干光束形成的相位控制模式的腔。只有空间过滤器不同。自由运行模式下的空间滤波器将激光器的场控制在最低阶的横向模式下,但不控制其相位角。纵向模式的随机幅度和相位变化会阻止平稳干扰波形的形成。在远场中(由外部镜头恢复时),阵列中的激光强度集中在具有空间相干性的单个激光束中,没有任何光栅波瓣。远场分布不受激光间距的影响。自由运行模式下激光器阵列的远场分布与相位控制模式下的干涉图有很大不同。两种模式的光波形的调制特性也完全不同。这是因为调制与空间滤波器与具有光学腔的激光器阵列的纵向模式的相互作用有关。自由运行模式的光波形的调制是非周期性的,这证实了激光光场的波动是随机的。实验是在室温下使用三个GaAs激光器的单片阵列进行的。研究了激光阵列的远场分布和光波形。

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    《Journal of Applied Physics》 |1975年第10期|P.4552-4556|共5页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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