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ファイル | 記述 | サイズ | フォーマット | |
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PhysRevA.102.023120.pdf | 778.43 kB | Adobe PDF | 見る/開く |
タイトル: | Third-order nonlinear effects on femtosecond X-ray-absorption near-edge spectra |
著者: | Kitamura, Hikaru ![]() ![]() |
著者名の別形: | 北村, 光 |
発行日: | Aug-2020 |
出版者: | American Physical Society (APS) |
誌名: | Physical Review A |
巻: | 102 |
号: | 2 |
論文番号: | 023120 |
抄録: | Reduced density matrix equations combined with a cluster molecular-orbital method are formulated to describe resonant core-valence electron excitation by an intense femtosecond x-ray pulse. The electron-hole interaction is treated by the time-dependent unrestricted Hartree-Fock approximation supplemented by a screening correction in the Born approximation. Nonlinear K-shell absorption spectra of metallic copper are thereby computed. Numerical results indicate that, in the third-order nonlinear regime, where the fraction of excited electrons increases in proportion to the x-ray intensity, the absorption spectra above the K edge undergo shifts toward high-energy side. The origin of this third-order nonlinearity can be traced to a negative renormalization of the core orbital energy due to strong electron-hole attraction, which offers a sharp contrast to the usual optical nonlinearity due simply to the increment of upper-state populations. For higher intensities, broadening of the absorption edge and saturation of absorption are predicted. These trends are qualitatively consistent with nonlinear spectroscopy experiments using the SACLA x-ray free-electron laser. |
著作権等: | ©2020 American Physical Society 許諾条件に基づいて掲載しています。 |
URI: | http://hdl.handle.net/2433/261143 |
DOI(出版社版): | 10.1103/PhysRevA.102.023120 |
出現コレクション: | 学術雑誌掲載論文等 |

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