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High-order harmonics measured by the photon statistics of the infrared driving-field exiting the atomic medium

机译:通过离开原子介质的红外驱动场的光子统计量测出的高次谐波

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摘要

High-order harmonics in the extreme-ultraviolet spectral range, resulting from the strong-field laser-atom interaction, have been used in a broad range of fascinating applications in all states of matter. In the majority of these studies the harmonic generation process is described using semi-classical theories which treat the electromagnetic field of the driving laser pulse classically without taking into account its quantum nature. In addition, for the measurement of the generated harmonics, all the experiments require diagnostics in the extreme-ultraviolet spectral region. Here by treating the driving laser field quantum mechanically we reveal the quantum-optical nature of the high-order harmonic generation process by measuring the photon number distribution of the infrared light exiting the harmonic generation medium. It is found that the high-order harmonics are imprinted in the photon number distribution of the infrared light and can be recorded without the need of a spectrometer in the extreme-ultraviolet.
机译:由强场激光-原子相互作用产生的极紫外光谱范围内的高次谐波已被广泛用于所有物质状态的引人入胜的应用中。在这些研究中的大多数中,使用半经典理论描述了谐波产生过程,该理论经典地处理了驱动激光脉冲的电磁场,而不考虑其量子性质。此外,为了测量所产生的谐波,所有实验都需要在极紫外光谱区域进行诊断。在这里,通过机械地处理驱动激光场量子,我们通过测量离开谐波生成介质的红外光的光子数分布,揭示了高次谐波生成过程的量子光学性质。已经发现,高次谐波被印在红外光的光子数分布中,并且不需要极端紫外光谱仪就可以记录。

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