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Formation of high densities of color centers in insulator materials using ultrafast lasers

机译:使用超快激光形成绝缘子材料中的高密度的形成

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The high instantaneous powers associated with femtosecond lasers can color many nominally transparent materials. Although the excitations responsible for this defect formation occur on subpicosecond time scales, subsequent interactions between the resulting electronic and lattice defects complicate the evolution of color center formation and decay. These interactions must be understood in order to account for the long term behavior of coloration. In this work, we probe the evolution of color centers produced by femtosecond laser radiation in soda lime glass and single crystal sodium chloride on time scales from microseconds to hundreds of seconds. By using an appropriately chosen probe laser focused through the femtosecond laser spot, we can follow the changes in coloration due to individual or multiple femtosecond pulses, and follow the evolution of that coloration for long times after femtosecond laser radiation is terminated. For the soda lime glass, the decay of color centers is well described in terms of bimolecular annihilation reactions between electron and hole centers. Similar processes are also occurring in single crystal sodium chloride. Finally, we report fabrication of permanent periodic patterns in soda lime glass by two time coincident femtosecond laser pulses.
机译:与飞秒激光器相关的高瞬时功率可以呈现许多名义上的透明材料。虽然在亚单一的时间尺度上发生负责这种缺陷形成的激励,但是由此产生的电子和晶格缺陷之间的后续相互作用使色彩中心形成和衰减的演变复杂化。必须理解这些相互作用,以便考虑着色的长期行为。在这项工作中,我们探讨了苏打石灰玻璃的飞秒激光辐射和单晶氯化钠产生的彩色中心的演变,从微秒到数百秒。 By using an appropriately chosen probe laser focused through the femtosecond laser spot, we can follow the changes in coloration due to individual or multiple femtosecond pulses, and follow the evolution of that coloration for long times after femtosecond laser radiation is terminated.对于苏打石灰玻璃,在电子和孔中心之间的双分子湮灭反​​应方面,颜色中心的衰减很好地描述。在单晶氯化钠中也存在类似的方法。最后,我们在苏打石灰玻璃中举报了永久定期模式的制造,两次重合飞秒激光脉冲。

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