首页> 外文期刊>Acta Physica Polonica. A >Few-Cycle Laser Pulses: The Carrier-Envelope Phase, Its Role in the THz Emission from Laser-Generated Plasmas and a New Way to Measure It
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Few-Cycle Laser Pulses: The Carrier-Envelope Phase, Its Role in the THz Emission from Laser-Generated Plasmas and a New Way to Measure It

机译:少周期激光脉冲:载波包络相位,其在激光产生等离子体的太赫兹发射中的作用以及一种新的测量方法

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摘要

Terahertz emission from laser-generated air plasmas has recently been identified as an interesting source for THz radiation. High intensities and a large bandwidth of the THz pulses can be achieved. We briefly review several mechanisms which were employed to generate the quasi-static dipole moment needed for the optical rectification process. This leads us to a discussion of a specific application of THz emission from an air plasma, namely the investigation of the carrier-envelope phase of few-cycle optical pulses. Such pulses of a duration of less than 10 fs induce a spatial charge asymmetry in the plasma directly via non-linear tunneling ionization. The asymmetry, and with it the emission of the THz radiation from the plasma, depend on the carrier-envelope phase, with the consequence that one can determine the phase by measurement of the amplitude and polarity of the THz pulse.
机译:激光产生的空气等离子体中的太赫兹发射最近被确定为太赫兹辐射的有趣来源。可以实现THz脉冲的高强度和大带宽。我们简要回顾了几种用于产生光学整流过程所需的准静态偶极矩的机制。这使我们对空气等离子体中THz发射的特定应用进行了讨论,即研究几个周期光脉冲的载流子-包络相。持续时间少于10 fs的此类脉冲直接通过非线性隧穿电离在等离子体中引起空间电荷不对称。不对称性以及从等离子体发射太赫兹辐射的不对称性取决于载波包络相位,其结果是人们可以通过测量太赫兹脉冲的幅度和极性来确定相位。

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