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Phase Explosion and Ablation in Fused Silica Initiated by an Ultrashort-Pulse, Tunable Mid-Infrared Free-Electron Laser

机译:超短脉冲可调谐中红外自由电子激光器在熔融石英中发生相爆炸和烧蚀

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Ularashort laser pulses interacting with brittle dielectrics in the mid-infrared region of the spectrum produce a number of novel effects which are potentially useful in materials processing and analysis. These include the texturing of the surface, the generation of hydrodynamic instabilities, and surprisingly efficient and gentle ablation behavior. Nevertheless, the mechanism of infrared laser ablation remains somewhat mysterious. Here we present evidence for a mechanism of explosive vapoization in fused silica, initiated by picosecond pulses from a tunable free=electron laser operating in the wavelength region from 2-10 mu m. The unusual pulse structure of the free-electron laser - which produces 1-ps micropulses at intervals of 350 ps in a macropulse lasting up to 4 3mu s - makes it possible to test separately the effects of intensity and fluence. We show in particular that thermal descriptions of the ablation process fail in the regime where there is high vibrational excitation density in the solid due to resonant absorption of mid-infrared laser light.
机译:Ularashort激光脉冲与光谱的中红外区域中的脆性电介质相互作用会产生许多新颖的效果,这些效果可能在材料加工和分析中很有用。这些包括表面的纹理化,流体动力学不稳定性的产生,以及令人惊奇的有效和温和的烧蚀行为。然而,红外激光烧蚀的机制仍然有些神秘。在这里,我们为熔融石英中爆炸性汽化的机理提供证据,该机制是由可调谐自由电子激光器的皮秒脉冲引发的,该激光在2-10微米的波长范围内工作。自由电子激光器的异常脉冲结构-以350 ps的间隔产生1 ps的微脉冲,持续4到3μs的大脉冲-使单独测试强度和注量的影响成为可能。我们特别表明,由于中红外激光的共振吸收,在固体中存在高振动激发密度的情况下,烧蚀过程的热学描述失败了。

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