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Ultrashort laser pulse-induced anti-Stokes photoluminescence of hot electrons in gold nanorods

机译:超短激光脉冲诱导金纳米棒中热电子的反斯托克斯光致发光

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We report observing anti-Stokes broadband radiation induced in gold nanorods by ultrashort laser pulses. The radiation is in the visible spectral range along with the second harmonic peak. Unlike conventional photoluminescence of metal nanoparticles, the energy of the excitation photons is smaller than the gap between the top of the d band and the Fermi level. Because the gold nanorods are irradiated with a pulse whose time is shorter than the electron-phonon equilibration time in gold, the energy is absorbed by s/p band electrons, creating a temperature difference between the electrons and the lattice, as described by the two-temperature model. Therefore, we identify the origin of the observed radiation as the recombination of hot conduction electrons with the d band holes created by the same ultrashort laser pulse.
机译:我们报告观察超短激光脉冲在金纳米棒中诱导的反斯托克斯宽带辐射。辐射与第二谐波峰值一起在可见光谱范围内。与金属纳米粒子的常规光致发光不同,激发光子的能量小于d谱带顶部与费米能级之间的间隙。因为金纳米棒的脉冲时间比金中的电子-声子平衡时间短,所以能量被s / p带电子吸收,从而在电子和晶格之间产生了温差,如两者所述温度模型。因此,我们将观察到的辐射源确定为热传导电子与同一超短激光脉冲产生的d带孔的复合。

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