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首页> 外文期刊>Journal of Mathematical Sciences >SPATIO-TEMPORAL DYNAMICAL SYSTEMS IN INNER-SHELL PHOTOIONIZATION IN FREE MOLECULES, CLUSTERS, AND SOLIDS
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SPATIO-TEMPORAL DYNAMICAL SYSTEMS IN INNER-SHELL PHOTOIONIZATION IN FREE MOLECULES, CLUSTERS, AND SOLIDS

机译:分子,团簇和固体中壳内光化的时空动力学系统

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摘要

Dynamic spatial hole localization and symmetry breaking phenomena are examined. Absorption of X-ray synchrotron and free-electron-laser radiation in matter is accompanied by strong dynamic corehole localization and temporary trap of the electron ejected from a deep level within the finite size potential barrier. As a result the symmetry of core excited states is reduced in comparison with ground state as the inversion symmetry is being broken. This is a very general property of coreexcited polyatomic compounds with equivalent atoms as their equivalence implies their equal probability of excitation averaged over large timescale but not simultaneous core excitation. Different approaches to rationalizing the symmetry breaking phenomena are presented and discussed with the emphasis on the quasiatomic dynamic corehole localization model. By examining the experimental ultrafast probe of photoabsorption processes we demonstrate an important role of spatio-temporal (nanometric-femtosecond) dynamically localized coreexcited moieties in molecule, clusters and solids. The photoelectron angular distributions from N and O 1s levels in fixed-in-space N_2 and CO_2 molecules, the photoelectron induced rotational heating of N_2, the Auger decay spectra of N_2 and the near S 1s edge X-ray absorption fine structure of free SF_6 molecules are discussed in more detail.
机译:研究了动态空间孔定位和对称破坏现象。物质中X射线同步加速器和自由电子激光辐射的吸收伴随着强烈的动态核孔局部化和在有限尺寸的势垒内从深处射出的电子的临时陷阱。结果,由于反转对称性被破坏,与基态相比,芯激发态的对称性降低了。这是具有等价原子的核激发多原子化合物的非常普遍的性质,因为它们的当量意味着它们在大时间范围内平均激发的均等概率,而不是同时发生核激发。提出并讨论了各种合理化对称性破坏现象的方法,重点是准原子动态岩心定位模型。通过检查光吸收过程的实验超快探针,我们证明了时空(纳米飞秒)在分子,簇和固体中动态定位的核激发部分的重要作用。空间固定N_2和CO_2分子中N和O 1s能级的光电子角分布,N_2的光电子诱导旋转加热,N_2的俄歇衰变谱以及自由SF_6的近S 1s边缘X射线吸收精细结构分子被更详细地讨论。

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  • 来源
    《Journal of Mathematical Sciences》 |2014年第6期|835-848|共14页
  • 作者单位

    Institute of Physics, St.Petersburg State University, 198504, St. Petersburg, Russia;

    Institute of Physics, St.Petersburg State University, 198504, St. Petersburg, Russia;

    Institute of Physics, St.Petersburg State University, 198504, St. Petersburg, Russia;

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