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Quantum coherent control of the vibrational dynamics of a polyatomic molecule using adaptive feedback control of a femtosecond laser

机译:使用飞秒激光的自适应反馈控制,对多原子分子的振动动力学进行量子相干控制

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We simulate adaptive feedback control to coherently shape a femtosecond infrared laser pulse by means of a 4f-spatial light modulator in order to selectively excite the rovibrational modes of a polyatomic molecule. We preferentially populate an arbitrarily chosen upper rovibrational level by only employing these tailored temporally shaped pulses. A second laser would then allow for mode selective chemistry to interact selectively with the excited population. Alternatively the excited molecules enhanced reactivity could be exploited for selective chemistry.
机译:我们模拟自适应反馈控制,以通过4f-空间光调制器相干地整形飞秒红外激光脉冲,以便有选择地激发多原子分子的振动模式。我们仅通过采用这些定制的时间整形脉冲来优先填充任意选择的上振动水平。然后,第二激光将允许模式选择化学与受激种群选择性地相互作用。或者,可以将激发的分子增强的反应性用于选择性化学。

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