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Ultrafast birefringence induced by a femtosecond laser filament in gases

机译:飞秒激光灯丝在气体中引起的超快双折射

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We demonstrate that a femtosecond-laser filament in both molecular and atomic gases is birefringent for a copropagating probe pulse. Any input-probe polarization is decomposed into two orthogonal components, the optical axis being in the pump polarization direction. In molecular gases, the birefringence is mainly due to the delayed rotational molecular-wave packet; the probe pulse thus experiences several revivals in time. The two probe components end up spatially separated in the far field. In atomic gases such as argon, the effect is weaker and is attributed to the instantaneous electronic cross-phase modulation.
机译:我们证明了在分子气体和原子气体中的飞秒激光灯丝对于共同传播的探测脉冲都是双折射的。任何输入探针偏振都分解为两个正交分量,光轴沿泵浦偏振方向。在分子气体中,双折射主要是由于分子旋转波包延迟。因此,探测脉冲随时间经历了几次复兴。两个探针分量最终在远场中在空间上分开。在诸如氩气的原子气体中,该作用较弱,并且归因于瞬时电子交叉相位调制。

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