O Krizsán Gergö, Tibai Zoltán, Hebling János, Pálfalvi László, Almási Gábor, Tóth György
Opt Express. 2020 Nov 9;28(23):34320-34327. doi: 10.1364/OE.405748.
A new type of THz source, working in reflection geometry, is proposed, where the pulse-front-tilt is introduced by a periodically micro-structured metal profile. For optical coupling, high refractive index nanocomposite fluid is used between the nonlinear optical material and the structured metal surface. Numerical simulations predict ∼87 and ∼85% optimized diffraction efficiencies for lithium niobate and lithium tantalate at 1030 and 800 nm pump wavelengths. The largest diffraction efficiencies can be achieved for a larger refractive index of the nanocomposite fluid than the index of the nonlinear material, for both cases. THz generation efficiencies of ∼3 and ∼1% are predicted for lithium niobate and lithium tantalate, respectively.
提出了一种新型的太赫兹源,其工作于反射几何结构,其中脉冲前沿倾斜由周期性微结构金属轮廓引入。为了实现光耦合,在非线性光学材料与结构化金属表面之间使用了高折射率纳米复合流体。数值模拟预测,在1030和800nm泵浦波长下,铌酸锂和钽酸锂的优化衍射效率分别约为87%和85%。在这两种情况下,当纳米复合流体的折射率大于非线性材料的折射率时,可实现最大衍射效率。预测铌酸锂和钽酸锂的太赫兹产生效率分别约为3%和1%。