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环境空气中太赫兹波产生的相干控制。

Coherent control of THz wave generation in ambient air.

作者信息

Xie Xu, Dai Jianming, Zhang X-C

机构信息

Center for Terahertz Research, Rensselaer Polytechnic Institute, Troy, New York 12180 USA.

出版信息

Phys Rev Lett. 2006 Feb 24;96(7):075005. doi: 10.1103/PhysRevLett.96.075005. Epub 2006 Feb 23.

Abstract

Our study of THz wave generation in the pulsed laser induced air plasma with individually controlled phase, polarization, and amplitude of the optical fundamental wave (omega) and its second harmonic (2omega) indicates that the third-order nonlinear optical process mixing the omega and 2omega beams in the ionized plasma is the main mechanism of the efficient THz wave generation. The polarity and the strength of the emitted THz field are completely controlled by the relative phase between the omega and 2omega waves. The measured THz field amplitude is proportional to the pulse energy of the fundamental beam and to the square root of the pulse energy of the second-harmonic beam once the total optical pulse energy exceeds the plasma formation threshold. The optimal THz field is achieved when all waves (omega, 2omega, and THz waves) are at the same polarization in the four-wave-mixing process.

摘要

我们对在脉冲激光诱导的空气等离子体中产生太赫兹波的研究,该等离子体中基频光(ω)及其二次谐波(2ω)的相位、偏振和振幅可单独控制。研究表明,在电离等离子体中混合ω和2ω光束的三阶非线性光学过程是高效产生太赫兹波的主要机制。发射的太赫兹场的极性和强度完全由ω和2ω波之间的相对相位控制。一旦总光脉冲能量超过等离子体形成阈值,测得的太赫兹场振幅与基频光束的脉冲能量以及二次谐波光束脉冲能量的平方根成正比。当在四波混频过程中所有波(ω、2ω和太赫兹波)处于相同偏振时,可实现最佳太赫兹场。

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