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Relaxation dynamics of hot electrons in the transition metals Au, Ag, Cu, Pt, Pd, and Ni studied by ultrafast luminescence spectroscopy

机译:通过超快发光光谱研究的过渡金属Au,Ag,Cu,Pt,Pd和Ni的弛豫动力学

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摘要

The ultrafast relaxation dynamics of photoexcited electrons in six transition metals, Au, Ag, Cu, Pt, Pd, and Ni, were investigated using femtosecond luminescence spectroscopy in the infrared region between 0.4 and 1.05 eV. The behaviors of the time-resolved spectra are significantly different between group 11 noble metals (Au, Ag, and Cu) and group 10 transition metals (Pt, Pd, and Ni), which are neighbors in the periodic table of elements. In the latter group, the instantaneous luminescence intensities are one order of magnitude lower and the lifetimes (around 200 fs) are far shorter than those of the group 11 metals (typically 700 fs). The time-resolved spectra, decay profiles, and excitation power dependence were analyzed using a phenomenological model that considers both the nonthermal and thermal electrons. It was found that the nonthermal component is remarkably small in the group 10 transition metals. These systematic differences between group 10 and 11 metals are ascribed to the differences in their electron band structures and/or electron-phonon coupling strengths.
机译:使用0.4和1.05eV的红外区域中的飞秒发光光谱研究了六种过渡金属,Au,Ag,Cu,Pt,Pd和Ni中的光屏蔽电子的超快放松动态。第11组贵金属(AU,AG和Cu)和第10组转换金属(Pt,Pd和Ni)之间的时间分辨光谱的行为在显着差异,它们是元素周期表中的邻居。在后一组中,瞬时发光强度是下降的一个阶数,并且寿命(约200ff)远短于第11金属(通常为700 fs)。通过考虑非热电子和热电子的现象学模型来分析时间分辨率光谱,衰减轮廓和激励功率依赖性。发现,在第10组过渡金属中,非热成分非常小。第10和11个金属之间的这些系统差异归因于它们的电子带结构和/或电子 - 声子耦合强度的差异。

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  • 来源
    《Journal of Applied Physics》 |2021年第2期|025101.1-025101.10|共10页
  • 作者单位

    Toyota Physical and Chemical Research Institute Yokomichi 41-1 Nagakute Aichi 480-1192 Japan Department of Engineering Science The University of Electro-Communications Chofu Tokyo 182-8585 Japan;

    Toyota Central R&D Labs. Inc. Yokomichi 41-1 Nagakute Aichi 480-1192 Japan;

    Toyota Central R&D Labs. Inc. Yokomichi 41-1 Nagakute Aichi 480-1192 Japan;

    Institute for Solid State Physics The University of Tokyo Kashiwanoha 5-1-5 Kashiwa Chiba Japan;

    Institute for Solid State Physics The University of Tokyo Kashiwanoha 5-1-5 Kashiwa Chiba Japan;

    Institute for Solid State Physics The University of Tokyo Kashiwanoha 5-1-5 Kashiwa Chiba Japan;

    Department of Applied Physics Nagoya University Chikusa Nagoya 464-8603 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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