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Transformation of the frequency-modulated continuous-wave field into a train of short pulses by resonant filters

机译:通过谐振滤光片将频率调制的连续波场转换为短脉冲列车

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摘要

The resonant filtering method transforming the frequency-modulated radiation field into a train of short pulses is proposed to be applied in the optical domain. Effective frequency modulation can be achieved by using an electro-optic modulator. Due to frequency modulation, a narrow-spectrum cw radiation field is seen by the resonant filter as a comb of equidistant spectral components separated by the modulation frequency. Tuning a narrow-bandwidth filter in resonance with the nth spectral component of the comb transforms the radiation field into bunches of pulses, with n pulses in each bunch. The transformation is explained by the interference of the coherently scattered resonant component of the field with the whole comb. Constructive interference results in the formation of pulses, while destructive interference is seen as dark windows between pulses. It is indicated that the optimal thickness of the resonant filter is several orders of magnitude smaller than the necessary thickness of the dispersive filters used before in the optical domain to produce short pulses from the frequency-modulated field.
机译:建议将频率调制辐射场转换为短脉冲列车的谐振滤波方法被应用于光学域。通过使用电光调制器可以实现有效的频率调制。由于频率调制,谐振滤波器可以看到窄谱CW辐射场作为由调制频率分离的等距光谱分量的梳状。用梳状的第n个光谱分量调谐窄带滤波器,梳理的第n个光谱分量将辐射场转化为束脉冲,每个束中的n个脉冲。通过与整个梳子的相干散射的谐振分量的干涉来解释变换。建设性干扰导致脉冲的形成,而破坏性干扰被视为脉冲之间的暗窗。结果表明,谐振滤波器的最佳厚度是比在光学畴中使用的分散滤波器的必要厚度小的几个数量级,以产生来自频率调制的场的短脉冲。

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