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Applications of the frequency locking effect in acousto-optic systems for control of optical radiation spectral composition

机译:频率锁定效应在声光学系统中控制光学辐射谱组合物

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A spectral optoelectronic system combining a collinear acousto-optic (AO) cell and positive electronic feedback is examined. The operation of this system in the generation mode and possibilities of practical application of the locking effect of the system's self-oscillations for controlling the optical radiation mode composition of semiconductor lasers are studied. The design and test results of the new AO device, which can be treated as a time-domain optical demultiplexer, are described. This demultiplexer also applies the frequency locking effect. The demultiplexer model presented achieves the following characteristics: the wavelength spacing between channels is less than 0.6 nm; the channel passband width is 0.4 nm; the crosstalk attenuation between adjacent channels is more than 42 dB; insertion loss is less than 2 dB; and the optical tuning range of the demultiplexer corresponds to the AO filter tuning range, which is not less than one octave. (C) 2019 Optical Society of America
机译:检查结合共线的光电子系统和正电子反馈组合的光电电解系统。 研究了该系统在生成模式和实际应用的可能性中,研究了系统的自振荡的锁定效果,用于控制半导体激光器的光学辐射模式组成。 描述了可以将新AO设备的设计和测试结果描述为时域光学解复用器。 该多路分解器还应用频率锁定效果。 提出的多路分解器模型实现了以下特征:通道之间的波长间距小于0.6nm; 通道通带宽为0.4nm; 相邻通道之间的串扰衰减大于42 dB; 插入损耗小于2 dB; 多路分解器的光学调谐范围对应于AO过滤器调谐范围,其不小于一个八度音频。 (c)2019年光学学会

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