Heat wave dynamics in frozen water droplets with eosin molecules under the femtosecond excitation of a supercontinuum

N. Myslitskaya, A. Tcibulnikova, I. Samusev, V. Slezhkin, Valeriy V. Bryukhanov
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Abstract

In this study, we considered thermal processes in liquid and frozen water droplets with added dye molecules and metal nanoparticles at the moment of supercontinuum generation. We studied optical non-linear processes in a water droplet with a diameter of 1.92 mm, cooled (+2 °C) and frozen to -17 °C, with eosin molecules and ablative silver nanoparticles upon femtosecond laser treatment.When we exposed a cooled water droplet and a piece of ice containing eosin molecules and ablative silver nanoparticles to a femtosecond laser beam (l = 1030 nm), we recorded two-photon fluorescence, enhanced by plasmon processes. Also, supercontinuum generation took place, with a period of decay t = 0.02 s. The geometry of non-linear large -scale self-focusing (LLSS ~ 0.45–0.55 mm) was studied. The value of microscale self-focusing (LSSS ~ 0.1 mm) of SC radiation in the laser channel was determined experimentally. The study shows that the energy dissipation in the SC channel increases when the thermal non-linearity exceeds the electronic non-linearity. We modelled the thermal processes and determined the temperaturegradient of the heating of the frozen droplet exposed to a femtosecond pulse. Based on the experimental data, the heat wave propagation velocity was calculated to be n = 0.11 m/s.
在超连续介质飞秒激励下,含伊红分子的冷冻水滴中的热波动力学
在本研究中,我们考虑了加入染料分子和金属纳米颗粒的液体和冷冻水滴在超连续统生成时刻的热过程。我们研究了直径为1.92 mm的水滴在飞秒激光处理下,在冷却(+2°C)和冷冻到-17°C时的光学非线性过程,其中含有伊红分子和烧蚀纳米银。当我们将含有伊红分子和烧蚀银纳米粒子的冷却水滴和一块冰暴露在飞秒激光束(l = 1030 nm)下时,我们记录了等离子体过程增强的双光子荧光。同时发生了超连续谱,衰变周期t = 0.02 s。研究了非线性大尺度自聚焦(LLSS ~ 0.45 ~ 0.55 mm)的几何特性。实验确定了SC辐射在激光通道中的微尺度自聚焦(LSSS ~ 0.1 mm)值。研究表明,当热非线性超过电子非线性时,SC通道内的能量耗散增加。我们模拟了热过程,并确定了暴露在飞秒脉冲下的冷冻液滴的加热温度梯度。根据实验数据,计算出热波传播速度为n = 0.11 m/s。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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