首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >NUMERICAL INVESTIGATION OF OPTO-ENERGY PHENOMENA IN THIN GOLD FILMS IRRADIATED BY FEMTOSECOND PULSE LASER CONSIDERING QUANTUM EFFECTS
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NUMERICAL INVESTIGATION OF OPTO-ENERGY PHENOMENA IN THIN GOLD FILMS IRRADIATED BY FEMTOSECOND PULSE LASER CONSIDERING QUANTUM EFFECTS

机译:考虑量子效应的飞秒脉冲激光辐照的薄金膜中光能现象的数值研究

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摘要

Nonequilibrium energy transport and optical characteristics in thin gold film structures irradiated by a femtosecond pulse laser are examined numerically. With the use of a twotemperature model, the quantum effect is considered to determine various thermo-optical properties such as electron heat capacity, electron thermal onductivity, collision frequencies, reflectivity, and absorption rates. As a result, estimation on the electron temperature considering the quantum effect is in better agreement with measurements than those without considering quantum effect. During a femtoseond laser pulse, it is found that the electron and lattice are in nonequilibrium, the electron thermal conductivity changes rapidly with time, and reflectivity decreases substantially because of the changes in dielectric function and refractive index of gold films.
机译:用飞秒脉冲激光辐照了金薄膜结构中的非平衡能量传输和光学特性。通过使用两个温度模型,可以考虑使用量子效应来确定各种热光学性质,例如电子热容,电子热导率,碰撞频率,反射率和吸收率。结果,与不考虑量子效应的情况相比,考虑了量子效应的电子温度的估计与测量结果更好地吻合。在飞秒激光脉冲中,发现电子和晶格处于非平衡状态,电子导热系数随时间迅速变化,并且由于金膜的介电功能和折射率的变化,反射率大大降低。

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