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A STUDY OF LASER ALBATION NEAR THE CRITICAL POINT

机译:临界点附近的激光消融研究

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Laser ablation is arguably the most important application areas of pulsed lasers, and is also the foundation of many other applications, such as precision microfabrication and pulsed laser deposition. However, underlying physical phenomena are still far from completely understood because ablation occurs at extremely high temperatures and pressures. In this study, the author investigates laser material interaction with emphasis on how a material behaves near the critical point. Employing temperature-dependent material property models and the Redlich-Kwong equation of state, the critical point behavior of materials under laser irradiation is studied at least qualitatively and some interesting results are obtained regarding the change in ablation modes in the thermal regime and the role of critical point.
机译:激光消融可以说是脉冲激光器最重要的应用领域,也是许多其他应用的基础,例如精密微制造和脉冲激光沉积。然而,潜在的物理现象仍然远远难以完全理解,因为消融发生在极高的温度和压力下。在这项研究中,作者调查了激光材料的相互作用,重点是如何在临界点附近的材料行为。采用温度依赖性材料性质模型和状态的redlich-kwong方程,至少定性地研究了激光照射下的材料的临界点行为,并在热调节中的烧蚀模式的变化和作用中获得了一些有趣的结果临界点。

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