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Single- and multiple-pulse laser-induced breakdown in transparent dielectrics in the femto-nanosecond region

机译:在毫微微纳秒区域中的透明电介质中的单脉冲激光诱导击穿

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This review is devoted to a long-term investigation into the nature of the laser-induced damage of silciate glasses. As an important result, we show that the threshold power density of the intrinsic damage of the boro-silicate glass at ~1 μm wavelength does not depend on pulse duration from 2 * 10~(-13) to 3 * 10~(-8)s as long as self-focusing is avoided. This result cannot be explained by existing theories and indicates that the damage mechanism involves a collective response of a certain volume in the dielectric as a whole, rather than the accumulation of electrons via individual generation processes like multiphoton, tunneling, or avalanche. Special attention in the research was paid to investigation into the processes of multiple pulse damage and subthreshold modification of boro- and lead-silicate glasses.
机译:该审查致力于长期调查激光诱导的硅片玻璃损伤性质。作为一个重要的结果,我们表明,硼硅酸盐玻璃的内在损坏的阈值功率密度在约1μm波长上不依赖于脉冲持续时间从2×10〜(-13)到3 * 10〜(-8 )只要避免自我聚焦。现有理论不能解释该结果,并表明损坏机制涉及作为整体的电介质中的一定体积的集体响应,而不是通过多选,隧道或雪崩等各个生成过程累积电子。在该研究中特别注意进行调查,调查硼铝和硅酸盐玻璃的多脉冲损伤和亚阈值改性。

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