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Controlled shaping of ultrafast electric field transients in the mid-infrared spectral range

机译:中红外光谱范围内超快速电场瞬变的受控整形

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摘要

We experimentally demonstrate amplitude and phase shaping of femtosecond mid-infrared pulses in a range centered about 14 μm. Single pulses with a tailored optical phase and phase-locked double pulses are generated by phase-matched difference-frequency mixing in a GaSe crystal of near-infrared pulses shaped with a liquid-crystal modulator. The electric field transients are directly measured by free-space electro-optic sampling, yielding pulse durations of 200-300 fs. Our data are in good agreement with a model that describes phase-matched optical rectification.
机译:我们通过实验证明了飞秒中红外脉冲在大约14μm范围内的幅度和相位整形。通过在液晶调制器成形的近红外脉冲的GaSe晶体中进行相位匹配的差频混合,可以生成具有定制光学相位的单脉冲和锁相双脉冲。电场瞬变可通过自由空间电光采样直接测量,产生200-300 fs的脉冲持续时间。我们的数据与描述相位匹配光学整流的模型非常吻合。

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