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Extremely frequency-widened terahertz wave generation using Cherenkov-type radiation

机译:使用Cherenkov型辐射极其频率加宽的太赫兹波生成

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Terahertz (THz) wave generation based on nonlinear frequency conversion is promising way for realizing a tunable monochromatic bright THz-wave source. Such a development of efficient and wide tunable THz-wave source depends on discovery of novel brilliant nonlinear crystal. Important factors of a nonlinear crystal for THz-wave generation are, 1. High nonlinearity and 2. Good transparency at THz frequency region. Unfortunately, many nonlinear crystals have strong absorption at THz frequency region. The fact limits efficient and wide tunable THz-wave generation. Here, we show that Cherenkov radiation with waveguide structure is an effective strategy for achieving efficient and extremely wide tunable THz-wave source. We fabricated MgO-doped lithium niobate slab waveguide with 3.8μm of thickness and demonstrated difference frequency generation of THz-wave generation with Cherenkov phase matching. Extremely frequency-widened THz-wave generation, from 0.1 to 7.2THz, without no structural dips successfully obtained. The tuning frequency range of waveguided Cherenkov radiation source was extremely widened compare to that of injection seeded-Terahertz Parametric Generator. The tuning range obtained in this work for THz-wave generation using lithium niobate crystal was the widest value in our knowledge. The method can be easily applied for many conventional nonlinear crystals, results in realizing simple, reasonable, compact, high efficient and ultra broad band THz-wave sources.
机译:基于非线性频率转换的太赫兹(Thz)波产生是实现可调谐单色亮Thz波源的有希望的方式。这种高效宽的THZ波来源的这种发展取决于新颖的辉煌非线性晶体的发现。用于Thz波产生的非线性晶体的重要因素是,1.高的非线性和2. THz频率区域的良好透明度。不幸的是,许多非线性晶体在THz频率区域具有很强的吸收。事实限制了高效宽的可调Thz发电。在这里,我们表明,具有波导结构的Cherenkov辐射是实现高效且极宽的可调THz波源的有效策略。我们用Cherenkov相位匹配制造了3.8μm厚度的MgO掺杂锂铌酸锂板波导,并证明了THz波发电的差异频率产生。极其频率加宽的THz波生成,从0.1到7.2THz,没有成功获得结构蘸垢。与喷射种子太赫兹参数发生器的调谐频率范围非常宽松,与注射播种 - 太赫兹参数发生器相比极其膨胀。在使用铌酸锂晶体的Thz波生成中获得的调谐范围是我们知识中最宽的价值。该方法可以容易地应用于许多传统的非线性晶体,导致实现简单,合理,紧凑,高效和超宽频段THz波源。

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