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Significant Volume Expansion as a Precursor to Ablation and Micropattern Formation in Phase Change Material Induced by Intense Terahertz Pulses

机译:强烈的太赫兹脉冲在相变材料中作为消融和微图案形成的先驱体具有显着的体积膨胀

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摘要

With rapid advances occurring in terahertz (THz) radiation generation techniques, the interaction between matter and intense THz fields has become an important research topic. Among different types of THz radiation sources, the free electron laser (FEL) is a promising experimental tool that is expected to pave the way for new forms of material processing, control of phase transitions, and serve as a test bench for extreme operating conditions in high-speed small-size electrical and magnetic devices through the exploitation of strong THz electrical and magnetic fields without the presence of interband electronic excitation. In the current work, we irradiated Ge2Sb2Te5 phase change memory material with intense THz pulse trains from an FEL and observed THz-induced surface changes due to damage as a precursor to ablation and the formation of fine surface undulations whose spatial period is comparable to or slightly smaller than the wavelength of the excitation THz pulses in the material. The formation of undulations as well as the fact that no significant thermal effect was observed below the volume expansion threshold suggests that THz-induced effects mainly contributed to the observed changes. To the best of our knowledge, this is the first experimental observation of THz-induced undulations (so-called “LIPSS”), which are of potential importance for laser material processing.
机译:随着太赫兹(THz)辐射产生技术的迅速发展,物质与强太赫兹场之间的相互作用已成为重要的研究课题。在不同类型的太赫兹辐射源中,自由电子激光(FEL)是一种很有前途的实验工具,有望为新型材料加工,控制相变铺平道路,并充当极端工作条件下的测试平台。通过在不存在带间电子激励的情况下利用强大的太赫兹电场和磁场来开发高速小型电磁设备。在当前的工作中,我们用来自FEL的强THz脉冲序列辐照了Ge2Sb2Te5相变存储材料,并观察到由于损伤而导致的THz诱导的表面变化(作为烧蚀的先兆)以及形成的精细表面起伏,其空间周期可比或略微小于材料中激发THz脉冲的波长。起伏的形成以及在体积膨胀阈值以下均未观察到明显的热效应的事实表明,THz诱导的效应主要促成观察到的变化。据我们所知,这是首次对太赫兹引起的起伏(所谓的“ LIPSS”)进行实验观察,这对激光材料加工具有潜在的重要性。

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