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Resonant absorption and not-so-resonant absorption in short, intense laser irradiated plasma

机译:在短而强的激光辐照等离子体中的共振吸收和非共振吸收

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摘要

An analytical model for laser-plasma interaction during the oblique incidence by an ultrashort ultraintense p-polarized laser on a solid-density plasma is proposed. Both the resonant absorption and not-so-resonant absorption are self-consistently included. Different from the previous theoretical works, the physics of resonant absorption is found to be valid in more general conditions as the steepening of the electron density profile is considered. Even for a relativistic intensity laser, resonant absorption can still exist under certain plasma scale length. For shorter plasma scale length or higher laser intensity, the not-so-resonant absorption tends to be dominant, since the electron density is steepened to a critical level by the ponderomotive force. The laser energy absorption rates for both mechanisms are discussed in detail, and the difference and transition between these two mechanisms are presented.
机译:提出了在固体密度等离子体上超短超强p偏振激光斜入射过程中激光-等离子体相互作用的解析模型。共振吸收和非共振吸收都是自洽的。与以前的理论工作不同,由于考虑了电子密度分布的陡峭性,共振吸收的物理原理在更一般的条件下是有效的。即使对于相对论强度的激光器,在一定的等离子体标度长度下共振吸收仍然可以存在。对于较短的等离子标度长度或较高的激光强度,由于电子势能由于质动力而陡峭地上升到临界水平,因此非共振吸收趋于占主导地位。详细讨论了这两种机制的激光能量吸收率,并介绍了这两种机制之间的区别和过渡。

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