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首页> 外文期刊>Physics Reports: A Review Section of Physics Letters (Section C) >Time-resolved studies of ultrafast wavepacket dynamics in hydrogen molecules
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Time-resolved studies of ultrafast wavepacket dynamics in hydrogen molecules

机译:氢分子中超快波包动力学的时间分辨研究

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Recent advances in the study of quantum vibrations and rotations in the fundamental hydrogen molecules are reported. Using the deuterium molecules (D_2~+ and D_2) as exemplars, the application of ultrafast femtosecond pump-probe experiments to study the creation and time-resolved imaging of coherent nuclear wavepackets is discussed. The ability to study the motion of these fundamental molecules in the time-domain is a notable milestone, made possible through the advent of ultrashort intense laser pulses with durations on sub-vibrational (and sub-rotational) timescales. Quantum wavepacket revivals are characterised for both vibrational and rotational degrees of freedom and quantum models are used to provide a detailed discussion of the underlying ultrafast physical dynamics for the specialist and non-specialist alike.
机译:报道了基本氢分子中的量子振动和旋转研究的最新进展。以氘分子(D_2〜+和D_2)为例,讨论了超快速飞秒泵浦探针实验在研究相干核波包的产生和时间分辨成像中的应用。研究这些基本分子在时域中的运动的能力是一个显着的里程碑,这是由于超短强度激光脉冲的出现,其持续时间在亚振动(和亚旋转)时标上而成为可能。量子波包的复兴具有振动和旋转自由度的特征,并且量子模型用于为专业人士和非专业人士提供有关潜在超快物理动力学的详细讨论。

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