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首页> 外文期刊>Journal of optical technology >Superfast thermal melting of solids under the action of femtosecond laser pulses
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Superfast thermal melting of solids under the action of femtosecond laser pulses

机译:飞秒激光脉冲作用下固体的超快热熔

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摘要

The homogeneous formation of nucleation centers (nucleation) is regarded as a mechanism for the superfast thermal melting of solids under the action of femtosecond laser pulses. On the basis of classical nucleation theory, it is shown that, for a high degree of superheating of the solid, the melting process is determined to a greater extent by the time of heating of the crystal lattice as a result of electron-phonon interaction than by the nucleation kinetics. Thus, the melting process can be completed in the course of several picoseconds. On one hand, this time is less than the characteristic time of heterogeneous surface melting and, on the other hand, it is greater than the time for possible superfast nonthermal melting. Experimental data on the melting dynamics of tellurium, obtained by polarization microscopy with femtosecond time resolution, confirm that superfast thermal melting is possible.
机译:成核中心的均匀形成(成核)被认为是飞秒激光脉冲作用下固体超快热融化的一种机制。根据经典的成核理论,表明,对于固体的高度过热,由于电子-声子相互作用的结果,在更大的程度上由电子-声子相互作用导致的晶格加热时间决定了熔化过程。通过成核动力学。因此,熔化过程可以在几皮秒的时间内完成。一方面,该时间小于异质表面熔化的特征时间,另一方面,该时间大于可能的超快非热熔化的时间。通过飞秒时间分辨率的偏振显微镜获得的碲熔化动力学的实验数据证实了超快的热熔化是可能的。

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