Optical Generation of High-power Terahertz Pulses for Tunable Wave Source

I. Yoshimine, M. Yamashita, H. Hoshina, Mikiko Saito, H. Minamide, C. Otani
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引用次数: 1

Abstract

High-power terahertz pulse generation and its polarization and frequency control by optical rectification with nonlinear organic crystals were studied. Terahertz pulses up to 730 nJ/pulse was generated from a DAST crystal pumped by 250 $\mu \mathbf{J}$ femotosecond laser pulses with a central wavelength of 1500 nm. The terahertz peak electric field is estimated as 860 kV/cm if we focus the terahertz beam to $\phi = 300\mu \mathrm{m}$ spot, which is expected to nonlinear material control application. We proposed the high-power terahertz polarization pulse shaping using the double stacked nonlinear organic crystals excited with tailored pump pulses. Through the terahertz modulation of pump pulses, the waveform shaping of the high-power terahertz pulses are expected, which leads to selective excitation of molecules or spin waves.
用于可调谐波源的高功率太赫兹脉冲的光产生
研究了非线性有机晶体光整流产生大功率太赫兹脉冲及其偏振和频率控制。用中心波长为1500 nm的250个$\mu \mathbf{J}$飞秒激光脉冲泵浦DAST晶体,产生了高达730 nJ/脉冲的太赫兹脉冲。将太赫兹光束聚焦到$\phi = 300\mu \mathrm{m}$点,估计其峰值电场为860 kV/cm,有望用于非线性材料控制。提出了利用双堆叠非线性有机晶体在定制泵浦脉冲激励下进行高功率太赫兹偏振脉冲整形的方法。通过对泵浦脉冲的太赫兹调制,期望对高功率太赫兹脉冲进行波形整形,从而导致分子或自旋波的选择性激发。
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