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首页> 外文期刊>Laser physics letters >Effect of pulse duration on the energy delivery under nonlinear propagation of tightly focused Cr:forsterite laser radiation in bulk silicon
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Effect of pulse duration on the energy delivery under nonlinear propagation of tightly focused Cr:forsterite laser radiation in bulk silicon

机译:脉冲持续时间对紧密聚焦的非线性传播下的能量输送的影响:散装硅的Forsterite激光辐射

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We have investigated nonlinear laser-matter interaction inside silicon under tight focusing conditions by continuously tuning driving pulse duration from femtosecond to picosecond timescales. Such tailoring of laser pulse width provides a new route for energy delivery into a microvolume avoiding two-photon absorption and plasma defocusing in the pre-focal region. As a result, we have achieved values of saturated deposited energy density and plasma electron concentration of as high as 1 kJ cm(-3) and 10(19) cm(-3) respectively, which is lower than the threshold of irreversible structural transformation. For further increase of energy delivery inside silicon, a two-color technique supported by extremely tight focusing can be realized, forming a roadmap to the 3D industrial micromachining of planar bulk silicon.
机译:通过从飞秒向PicoSecond Timescales的飞行脉冲持续时间持续调整驾驶脉冲持续时间,我们在紧密的聚焦条件下研究了非线性激光物质相互作用。 这种激光脉冲宽度的剪裁提供了一种用于在预焦肿中避免在预焦肿中的微扫描中的微扫描和等离子体散射的新途径。 结果,我们已经实现了饱和沉积能量密度和等离子体电子浓度的值,分别高达1kJcm(-3)和10(19)cm(-3),其低于不可逆结构变换的阈值 。 为了进一步增加硅内的能量输送,可以实现通过极其紧致的聚焦支持的双色技术,形成了平面硅硅的3D工业微机械的路线图。

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