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利用关联波包对以阿秒分辨率探测分子动力学。

Probing molecular dynamics with attosecond resolution using correlated wave packet pairs.

作者信息

Niikura Hiromichi, Légaré F, Hasbani R, Ivanov Misha Yu, Villeneuve D M, Corkum P B

机构信息

National Research Council of Canada, 100 Sussex Drive, Ottawa, Ontario K1A 0R6, Canada.

出版信息

Nature. 2003 Feb 20;421(6925):826-9. doi: 10.1038/nature01430.

Abstract

Spectroscopic measurements with increasingly higher time resolution are generally thought to require increasingly shorter laser pulses, as illustrated by the recent monitoring of the decay of core-excited krypton using attosecond photon pulses. However, an alternative approach to probing ultrafast dynamic processes might be provided by entanglement, which has improved the precision of quantum optical measurements. Here we use this approach to observe the motion of a D2+ vibrational wave packet formed during the multiphoton ionization of D2 over several femtoseconds with a precision of about 200 attoseconds and 0.05 ångströms, by exploiting the correlation between the electronic and nuclear wave packets formed during the ionization event. An intense infrared laser field drives the electron wave packet, and electron recollision probes the nuclear motion. Our results show that laser pulse duration need not limit the time resolution of a spectroscopic measurement, provided the process studied involves the formation of correlated wave packets, one of which can be controlled; spatial resolution is likewise not limited to the focal spot size or laser wavelength.

摘要

一般认为,要进行时间分辨率越来越高的光谱测量,通常需要越来越短的激光脉冲,最近利用阿秒光子脉冲监测核心激发氪的衰变就说明了这一点。然而,纠缠或许能为探测超快动态过程提供另一种方法,它提高了量子光学测量的精度。在这里,我们利用这种方法,通过利用电离事件中形成的电子波包和核波包之间的相关性,在几个飞秒内以约200阿秒和0.05埃 的精度观察了D2在多光子电离过程中形成的D2 + 振动态波包的运动。强红外激光场驱动电子波包,电子再碰撞探测核运动。我们的结果表明,只要所研究的过程涉及相关波包的形成,其中一个波包可以被控制,那么激光脉冲持续时间就不必限制光谱测量的时间分辨率;空间分辨率同样也不限于焦斑尺寸或激光波长。

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