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通过脉冲时间对比度控制石英玻璃中的超快激光写入

Controlling ultrafast laser writing in silica glass by pulse temporal contrast.

作者信息

Lei Yuhao, Wang Huijun, Shayeganrad Gholamreza, Svirko Yuri, Kazansky Peter G

出版信息

Opt Lett. 2024 May 1;49(9):2385-2388. doi: 10.1364/OL.522307.

Abstract

We demonstrate that the temporal contrast of femtosecond light pulses is a critical parameter in laser writing inside transparent dielectrics, allowing different material modifications. In particular, anisotropic nanopores in silica glass are produced by high-contrast of 10 femtosecond Yb:KGW laser pulses rather than low-contrast of 10 Yb fiber laser pulses. The difference originates in the fiber laser storing a third of its energy in a post-pulse of up to 200 ps duration. The absorption of this low-intensity fraction of the pulse by laser-induced transient defects with relatively long lifetime and low excitation energy, such as self-trapped holes, drastically changes the kinetics of energy deposition and the type of material modification. We also demonstrate that low-contrast pulses are effective in creating lamellar birefringent structures, possibly driven by a quadrupole nonlinear current.

摘要

我们证明,飞秒光脉冲的时间对比度是透明电介质内部激光写入的关键参数,可实现不同的材料改性。特别是,石英玻璃中的各向异性纳米孔是由10飞秒Yb:KGW激光脉冲的高对比度产生的,而非10 Yb光纤激光脉冲的低对比度。差异源于光纤激光将其三分之一的能量存储在持续时间长达200 ps的后脉冲中。具有相对长寿命和低激发能量的激光诱导瞬态缺陷(如自陷空穴)对脉冲的这一低强度部分的吸收,极大地改变了能量沉积动力学和材料改性类型。我们还证明,低对比度脉冲在创建层状双折射结构方面是有效的,这可能由四极非线性电流驱动。

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