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Dual-mode tunable terahertz generation in lithium niobate driven by spatially shaped femtosecond laser

机译:空间形飞秒激光器驱动铌酸锂双模可调谐太赫兹波的产生

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A new approach for dual-mode (namely broadband mode and narrowband mode) THz pulses generation in a single lithium niobate (LN) crystal excited by spatially shaped tilted-pulse-front femtosecond (fs) laser pulse was proposed and experimentally demonstrated. The two THz emission modes are generated simultaneously while spatially separated. Both central frequency and bandwidth of narrowband THz emission is controllable by in-situ tuning the spatial modulation period and beam size of the fs-laser, and the broadband (0.1-1.5 THz) THz emission keeps almost unchanged while tuning the narrowband emission. Further optimization achieves the narrowband THz emission with energy spectral density up to 0.27 μJ/THz and with bandwidth narrowly down to 23 GHz.
机译:提出并通过空间形状的倾斜脉冲前飞秒(fs)激光脉冲激发的单个铌酸锂(LN)晶体中产生双模(即宽带模式和窄带模式)THz脉冲的新方法,并进行了实验证明。两个THz发射模式在空间上分开同时生成。窄带太赫兹发射的中心频率和带宽都可以通过现场调节fs激光器的空间调制周期和光束大小来控制,而宽带(0.1-1.5 THz)太赫兹发射在调节窄带发射时几乎保持不变。进一步的优化实现了窄带THz发射,能量谱密度高达0.27μJ/ THz,带宽窄至23 GHz。

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