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首页> 外文期刊>Japanese journal of applied physics >Random Frequency Accessible Broad Tunable Terahertz-Wave Source Using Phase-Matched 4-Dimethylamino-N-methyl-4-stilbazolium Tosylate Crystal
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Random Frequency Accessible Broad Tunable Terahertz-Wave Source Using Phase-Matched 4-Dimethylamino-N-methyl-4-stilbazolium Tosylate Crystal

机译:使用相匹配的4-二甲基氨基-N-甲基-4-苯乙烯基甲苯磺酸甲苯磺酸盐晶体的随机频率可访问的宽可调太赫兹波源

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Random frequency accessible, ultra-broad-band (1.5-37 THz) THz-wave generation was demonstrated using difference frequency generation (DFG) in an organic 4-dimethylamino-N-methyl-4-stilbazolium tosylate (DAST) crystal. Such DAST crystals are promising materials for efficient and high-power THz-wave generation because of their very high nonlinearity and low refractive index dispersion between the near-infrared region and the THz-wave region. We can use the highest nonlinear component of DAST, d_(11) (about 230 pm/V), to generate THz waves using DFG because the collinear phase-matching condition of the Type 0 configuration is satisfied. We constructed a dual-wavelength optical parametric oscillator (OPO) with two KTP crystals pumped by a frequency-doubled Nd:YAG laser. Each KTP crystal was set on a galvano scanner. The angle of each crystal was controlled independently. The OPO is tunable at 1300-1900 nm, giving an ultra-broad tunable range of the THz wave. We generated an ultra-broad tunable THz wave using only one DAST crystal without any change of the experimental setup aside from the computer-controlled galvano-scanner angle change. The highest THz-wave energy of 10 nJ was obtained at around the 26 THz region under 2 mJ of pumping energy. Also, the THz-wave source can access a desired THz frequency at every pulse (50 Hz at present). The galvano scanner has 1 kHz of response, with 1-ms frequency access speed.
机译:在有机4-二甲基氨基-N-甲基-4-苯乙烯基甲苯磺酸酯(DAST)晶体中使用差频产生(DFG),证明了随机频率可及的超宽带(1.5-37 THz)THz波的产生。这种DAST晶体具有很高的非线性和在近红外区域和THz波区域之间的低折射率色散,因此是产生高效和高功率THz波的有前途的材料。我们可以使用DAST的最高非线性分量d_(11)(约230 pm / V)来使用DFG生成THz波,因为可以满足类型0配置的共线相位匹配条件。我们用倍频Nd:YAG激光器泵浦的两个KTP晶体构造了一个双波长光学参量振荡器(OPO)。将每个KTP晶体放在电扫描仪上。每个晶体的角度是独立控制的。 OPO在1300-1900 nm范围内可调,从而提供了太赫兹波的超宽可调范围。我们仅使用一个DAST晶体就产生了一个超宽的THz可调波,除了计算机控制的电扫描仪角度变化外,没有任何实验设置的变化。在2 mJ的泵浦能量下,在26 THz区域附近获得了最高的10 Hz的THz波能量。同样,太赫兹波源可以在每个脉冲(目前为50 Hz)下访问所需的太赫兹频率。电扫描仪的响应速度为1 kHz,访问速度为1毫秒。

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