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Propagation of an attosecond X-ray pulse in an atomic-scale waveguide

机译:阿秒级X射线脉冲在原子级波导中的传播

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摘要

The guiding of an attosecond (as) X-ray pulse in a two-dimensional atomic structure is analyzed. The results obtained from a simple model show that an atomic-scale waveguide which consists of a barium monoxide lattice where five rows of atoms have been removed can successfully guide pulses with duration 20 as and wavelength 10 A. This is attributed to an improved total external reflection in the discrete atomic structure. When the carrier frequency is higher than the plasma frequency, the guide causes minor distortions in the pulse profile. For lower frequencies, the X-ray pulse is significantly affected by the guide dispersion. These results indicate that nano- and sub-nanostructures can be designed for transportation and processing of coherent attosecond-duration electromagnetic pulses, which is important for the newly emerging field of X-ray photonics.
机译:分析了二维原子结构中的阿秒X射线脉冲的引导。从简单模型获得的结果表明,由一氧化钡晶格构成的原子级波导已被去除,其中的五行原子已被去除,该波导可以成功地引导持续时间为20 as且波长为10 A的脉冲。这归因于总外部电流的改善离散原子结构中的反射。当载波频率高于等离子频率时,波导会导致脉冲轮廓中的较小失真。对于较低的频率,X射线脉冲会受到导向色散的明显影响。这些结果表明,纳米和亚纳米结构可设计用于相干阿秒持续时间电磁脉冲的传输和处理,这对于新兴的X射线光子学领域至关重要。

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