Lux Christian, Wollenhaupt Matthias, Sarpe Cristian, Baumert Thomas
Institut für Physik und CINSaT, Universität Kassel, Heinrich-Plett-Straße 40, 34132 Kassel (Germany).
Chemphyschem. 2015 Jan 12;16(1):115-37. doi: 10.1002/cphc.201402643. Epub 2014 Dec 9.
Photoelectron circular dichroism (PECD) is a CD effect up to the ten-percent regime and shows contributions from higher-order Legendre polynomials when multiphoton ionization is compared to single-photon ionization. We give a full account of our experimental methodology for measuring the multiphoton PECD and derive quantitative measures that we apply on camphor, fenchone and norcamphor. Different modulations and amplitudes of the contributing Legendre polynomials are observed despite the similarity in chemical structure. In addition, we study PECD for elliptically polarized light employing tomographic reconstruction methods. Intensity studies reveal dissociative ionization as the origin of the observed PECD effect, whereas ionization of the intermediate resonance is dominating the signal. As a perspective, we suggest to make use of our tomographic data as an experimental basis for a complete photoionization experiment and give a prospect of PECD as an analytic tool.
光电子圆二色性(PECD)是一种高达百分之十量级的圆二色性效应,当将多光子电离与单光子电离相比较时,它显示出高阶勒让德多项式的贡献。我们全面阐述了测量多光子PECD的实验方法,并推导了应用于樟脑、葑酮和降樟脑的定量测量方法。尽管化学结构相似,但观察到了贡献勒让德多项式的不同调制和幅度。此外,我们采用断层重建方法研究了椭圆偏振光的PECD。强度研究表明,解离电离是观察到的PECD效应的起源,而中间共振的电离则主导着信号。展望未来,我们建议将断层数据用作完整光离化实验的实验基础,并展望PECD作为一种分析工具的前景。