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Selective triggering of phase change in dielectrics by femtosecond pulse trains based on electron dynamics control 被引量:2

Selective triggering of phase change in dielectrics by femtosecond pulse trains based on electron dynamics control
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摘要 In this study we experimentally reveal that the phase change mechanism can be selectively triggered by shaping femtosecond pulse trains based on electron dynamics control (EDC), including manipulation of excitations, ionizations, densities, and temperatures of electrons. By designing the pulse energy distribution to adjust the absorptions, excitations, ionizations, and recombinations of electrons, the dominant phase change mechanism experiences transition from nonthermal to thermal process. This phenomenon is observed in quadruple, triple, and double pulses per train ablation of fused silica separately. This opens up possibilities for controlling phase change mechanisms by EDC, which is of great significance in laser processing of dielectrics and fabrication of integrated nano- and micro-optical devices. In this study we experimentally reveal that the phase change mechanism can be selectively triggered by shaping femtosecond pulse trains based on electron dynamics control (EDC), including manipulation of excitations, ionizations, densities, and temperatures of electrons. By designing the pulse energy distribution to adjust the absorptions, excitations, ionizations, and recombinations of electrons, the dominant phase change mechanism experiences transition from nonthermal to thermal process. This phenomenon is observed in quadruple, triple, and double pulses per train ablation of fused silica separately. This opens up possibilities for controlling phase change mechanisms by EDC, which is of great significance in laser processing of dielectrics and fabrication of integrated nano- and micro-optical devices.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第4期334-337,共4页 中国物理B(英文版)
基金 Project supported by the National Basic Research Program of China (Grant No. 2011CB013000) the National Natural Science Foundation of China (Grant Nos. 90923039 and 51025521)
关键词 phase change electron dynamics pulse shaping phase change electron dynamics pulse shaping
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