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实现基于飞秒的、与圆二色性相关的高次谐波光谱学。

Towards enabling femtosecond helicity-dependent spectroscopy with high-harmonic sources.

机构信息

LOA, UMR 7639, ENSTA-ParisTech, CNRS, Ecole Polytechnique, Chemin de la Hunière, F-91761 Palaiseau, France.

1] LOA, UMR 7639, ENSTA-ParisTech, CNRS, Ecole Polytechnique, Chemin de la Hunière, F-91761 Palaiseau, France [2] Sorbonne Universités, UPMC Paris 06, UMR 7614, LCPMR, 75005 Paris, France [3] CNRS, UMR 7614, LCPMR, 75005 Paris, France.

出版信息

Nat Commun. 2015 Feb 4;6:6167. doi: 10.1038/ncomms7167.

Abstract

Recent advances in high-harmonic generation gave rise to soft X-ray pulses with higher intensity, shorter duration and higher photon energy. One of the remaining shortages of this source is its restriction to linear polarization, since the yield of generation of elliptically polarized high harmonics has been low so far. We here show how this limitation is overcome by using a cross-polarized two-colour laser field. With this simple technique, we reach high degrees of ellipticity (up to 75%) with efficiencies similar to classically generated linearly polarized harmonics. To demonstrate these features and to prove the capacity of our source for applications, we measure the X-ray magnetic circular dichroism (XMCD) effect of nickel at the M2,3 absorption edge around 67 eV. There results open up the way towards femtosecond time-resolved experiments using high harmonics exploiting the powerful element-sensitive XMCD effect and resolving the ultrafast magnetization dynamics of individual components in complex materials.

摘要

高次谐波产生的最新进展产生了强度更高、持续时间更短和光子能量更高的软 X 射线脉冲。该光源目前仍存在一个局限性,即其偏振状态为线性,因为迄今为止椭圆偏振高次谐波的产生效率一直很低。我们通过使用双色交叉偏振激光场来克服这一限制。通过这种简单的技术,我们实现了高达 75%的椭圆度,效率与经典产生的线性偏振谐波相当。为了展示这些特性并证明我们的光源在应用方面的能力,我们在 67eV 左右的 M2、3 吸收边缘处测量了镍的 X 射线磁圆二色性(XMCD)效应。这些结果为使用高次谐波进行飞秒时间分辨实验铺平了道路,该实验利用了强大的元素敏感 XMCD 效应,并解析了复杂材料中各个成分的超快磁化动力学。

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