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首页> 外文期刊>Journal of Infrared, Millimeter, and Terahertz Waves >Terahertz Radiation Shaping Based on Third-Order Dispersion and Self-Phase Modulation in Standard Single-Mode Optical Fiber
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Terahertz Radiation Shaping Based on Third-Order Dispersion and Self-Phase Modulation in Standard Single-Mode Optical Fiber

机译:标准单模光纤中基于三阶色散和自相位调制的太赫兹辐射整形

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摘要

Third-order dispersion and self-phase modulation in standard single-mode fibers are employed in a fiber-based THz time domain spectroscopy system for radiation shaping. Ultra-short optical pulses are converted into trains of pulses, thus shaping the THz radiation emitted by photoconductive antennas operating at telecom wavelengths. The proposed architecture allows narrowband and wideband THz emission as well as tunability of the central frequency. Since the shaping takes place in standard optical fiber the architecture could be potentially implemented without requiring any additional device. Experiments showing the principle of operation have been performed demonstrating tunability of the central frequency between 350 and 800 GHz and bandwidth from 150 GHz to the full bandwidth of the system.
机译:在基于光纤的太赫兹时域光谱系统中,标准单模光纤中的三阶色散和自相位调制用于辐射整形。超短光脉冲被转换成脉冲序列,从而对以电信波长工作的光电导天线发出的THz辐射进行整形。所提出的架构允许窄带和宽带THz发射以及中心频率的可调性。由于整形是在标准光纤中进行的,因此可以在无需任何其他设备的情况下实现该体系结构。已经进行了表明工作原理的实验,证明了350至800 GHz之间的中心频率和150 GHz至系统全带宽的带宽是可调的。

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