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首页> 外文期刊>Laser physics letters >Enhancing nonlinear energy deposition into transparent solids with an elliptically polarized and mid-IR heating laser pulse under two-color femtosecond impact
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Enhancing nonlinear energy deposition into transparent solids with an elliptically polarized and mid-IR heating laser pulse under two-color femtosecond impact

机译:用椭圆偏振和中红外加热激光脉冲在双色飞秒冲击下将非线性能量沉积增强到透明固体中

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摘要

We report on an enhancement of deposited energy density of up to 10 kJ cm(-3) inside transparent solids (fused silica and quartz) from using two-color mu J energy level tightly focused (NA = 0.5) co-propagating linearly polarized seeding (visible, 0.62 mu m) and elliptically polarized heating (near-IR, 1.24 mu m) femtosecond laser pulses. The rise in temperature under constant volume causes pressure of up to 12 GPa. It has been shown experimentally and theoretically that the production of seeding electrons through multiphoton ionization by visible laser pulse paves the way for controllability of the energy deposition and laser-induced micromodification via carrier heating by delayed infrared laser pulses inside the material. The developed theoretical approach predicts that the deposited energy density will be enhanced by up to 14 kJ cm(-3) when using longer (up to 5 mu m) wavelengths for heating laser pulses inside transparent solids.
机译:我们报告了在透明固体(熔融二氧化硅和石英)内部透明固体(熔融二氧化硅和石英)的沉积能量密度的提高,从使用双色MU J能量水平紧密聚焦(Na = 0.5)共传播线性偏振播种 (可见,0.62μm)和椭圆偏振加热(近IR,1.24 mu m)飞秒激光脉冲。 在恒定体积下的温度升高会导致高达12GPa的压力。 已经通过实验和理论上示出了通过可见激光脉冲通过多选电离的播种电子通过载体加热通过材料内部的延迟红外激光脉冲通过载体加热来铺平播种电子。 开发的理论方法预测,当使用更长的(最多50μm)波长时,在透明固体内加热激光脉冲的波长,沉积的能量密度最多可增强14kJcm(-3)。

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