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Nano-modification inside transparent materials by femtosecond laser single beam

机译:飞秒激光单光束在透明材料内部进行纳米修饰

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摘要

Periodic nanostructures along the polarization direction of light are observed inside silica glasses and tellurium dioxide single crystal after irradiation by a focused single femtosecond laser beam. Backscattering electron images of the irradiated spot inside silica glass reveal a periodic structure of stripe-like regions of similar to 20 nm width with a low oxygen concentration. In the case of the tellurium dioxide single crystal, secondary electron images within the focal spot show the formation of a periodic structure of voids with 30 nm width. Oxygen defects in a silica glass and voids in a tellurium dioxide single crystal are aligned perpendicular to the laser polarization direction. These are the smallest nanostructures below the diffraction limit of light, which are formed inside transparent materials. The phenomenon is interpreted in terms of interference between the incident light field and the electric field of electron plasma wave generated in the bulk of material.
机译:在聚焦的单飞秒激光束照射后,在石英玻璃和二氧化碲单晶内部观察到了沿光偏振方向的周期性纳米结构。石英玻璃内部照射点的反向散射电子图像显示出类似条纹状区域的周期性结构,该区域类似于20 nm宽度,且氧浓度低。在二氧化碲单晶的情况下,焦点内的二次电子图像显示出具有30 nm宽度的空隙的周期性结构的形成。石英玻璃中的氧缺陷和二氧化碲单晶中的空隙垂直于激光偏振方向排列。这些是低于光的衍射极限的最小的纳米结构,形成在透明材料内部。这种现象是根据入射光场与在大部分材料中产生的电子等离子体波的电场之间的干扰来解释的。

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