Ma Danni, Dong Liquan, Zhang Minghao, Wu Tong, Zhao Yuejin, Zhang Liangliang, Zhang Cunlin
Opt Express. 2020 Jul 6;28(14):20598-20608. doi: 10.1364/OE.395130.
This study experimentally demonstrates and theoretically analyzes the enhancement of terahertz (THz) waves from two-color laser-field (consisting of a near-infrared femtosecond laser and its second-harmonic wave) induced air plasma using an additional 800 nm femtosecond laser. The experiments revealed that the additional 800 nm laser increased the THz energy up to 22 times. To understand the enhancement mechanism and reveal the maximum enhancement conditions, the effects of the 800 nm beam's polarization and energy variations of both beams on the THz amplification were studied. With the increase in the 800 nm pulse energy, the THz yield initially increases, and then decreases after reaching an inflection point. The THz increase rate continues to increase with the decrease in energy of the near-infrared two-color fields. The 800 nm beam could efficiently modulate the THz spectral energy distribution by increasing the high-frequency components, while decreasing the low-frequency components.
本研究通过实验证明并从理论上分析了利用额外的800纳米飞秒激光对由双色激光场(由近红外飞秒激光及其二次谐波组成)诱导的空气等离子体产生的太赫兹(THz)波的增强作用。实验表明,额外的800纳米激光可将太赫兹能量提高至22倍。为了解增强机制并揭示最大增强条件,研究了800纳米光束的偏振以及两束光的能量变化对太赫兹放大的影响。随着800纳米脉冲能量的增加,太赫兹产率先增加,在达到拐点后下降。太赫兹增加率随着近红外双色场能量的降低而持续增加。800纳米光束可通过增加高频成分、减少低频成分来有效调制太赫兹光谱能量分布。