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The role of avalanche ionization in generation of defects in lithium fluoride crystals under the action of femtosecond laser pulses

机译:雪崩电离在飞秒激光脉冲作用下在氟化锂晶体中产生缺陷的作用

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The paper presents the results of experimental and theoretical studies of the role of avalanche ionization in the process of highly nonlinear generation of electron-hole pairs in the interaction of intense femtosecond laser radiation with dosimetric crystals LiF:Mg,Ti. We assume that the effective formation of defects of hole-interstitial type, which consist of molecular halogen ions placed in one cationic and two anionic vacancies, distinguished by high-temperature peaks in the thermally stimulated luminescence curves, is feasibly connected with avalanche ionization processes occurring in the regions of passage of light filaments. The calculated dependences of the plasma density on time during the laser pulse made with taking into account the avalanche ionization for this type of crystals show that the contribution of avalanche ionization to the electron-hole plasma density is comparable to that of the multiphoton tunneling mechanism.
机译:本文介绍了雪崩电离在强度非线性激光激光辐射相互作用中的高度非线性产生的过程中的实验和理论研究的实验性和理论研究结果,其具有剂量晶体LiF:Mg,Ti。我们假设有效地形成孔间隙型的缺陷,该缺陷由在一个阳离子和两个阴离子空位中置于一个阳离子和两个阴离子空位的分子卤素,以热刺激的发光曲线中的高温峰分为特征,与发生的雪崩离子化过程有意义地连接在轻丝通过的区域。通过考虑这种晶体的雪崩电离制成的激光脉冲在激光脉冲期间计算的等离子体密度的计算依赖性表明,雪崩电离对电子 - 孔等离子体密度的贡献与多选隧道机构的贡献相当。

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