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利用纳秒和飞秒激光从单个BiBO晶体中高效产生二次谐波和太赫兹波。

Efficient second-harmonic and terahertz generation from single BiBOcrystal using nanosecond and femtosecond lasers.

作者信息

Ghorui Chandan, Rudra A M, Chatterjee Udit, Chaudhary A K, Ganesh D

出版信息

Appl Opt. 2021 Jul 1;60(19):5643-5651. doi: 10.1364/AO.424241.

Abstract

The paper reports the efficient UV and terahertz generation from a 1.29 mm thick and Type I, =28.9 cut (bismuth triborate, BIBO) crystal using femtosecond and nanoseconds laser pulses. We have employed 800 nm wavelength pulses of 50 and 140 fs obtained from a Ti:sapphire laser amplifier and oscillators at 1 kHz and 80 MHz repetition rates, respectively. The conversion efficiency of second-harmonic generation (SHG) was ∼50 while that obtained for terahertz (THz) generations was of the order of 1.85×10. In addition, LDS-698 dye laser radiation tunable between 650-700 nm was also used as a source for SHG between the 325-350 nm range. The dye laser was pumped by SHG (532 nm) radiation from an electro-optically -switched Nd:YAG laser having a pulse repetition rate of 10 Hz and a pulse width of 10 ns. A conversion efficiency of 4.01% was obtained for generation of UV at 343.5 nm. Finally, we have measured the transmission, refractive index, absorbance, and conductivity properties of BIBO crystal in the THz domain. We also ascertained the coherence length, relative permittivity and reflectivity of the crystal.

摘要

该论文报道了使用飞秒和纳秒激光脉冲,从一块厚度为1.29毫米、I型、切割角为28.9°(硼酸铋,BIBO)的晶体中高效产生紫外线和太赫兹波。我们分别使用了从钛宝石激光放大器和振荡器获得的波长为800纳米、脉宽为50飞秒和140飞秒的脉冲,重复频率分别为1千赫兹和80兆赫兹。二次谐波产生(SHG)的转换效率约为50%,而太赫兹(THz)产生的转换效率约为1.85×10。此外,波长在650 - 700纳米之间可调的LDS - 698染料激光辐射也被用作325 - 350纳米范围内二次谐波产生的光源。该染料激光由电光开关的Nd:YAG激光产生的二次谐波(532纳米)辐射泵浦,其脉冲重复频率为10赫兹,脉冲宽度为10纳秒。在343.5纳米处产生紫外线的转换效率为4.01%。最后,我们测量了BIBO晶体在太赫兹波段的透射率、折射率、吸光度和电导率特性。我们还确定了晶体的相干长度、相对介电常数和反射率。

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