Huang Wei-Hong, Zhao Yue, Kusama Shota, Kumaki Fumitoshi, Luo Chih-Wei, Fuji Takao
Opt Express. 2020 Nov 23;28(24):36527-36543. doi: 10.1364/OE.408342.
We have experimentally demonstrated the generation of sub-half-cycle phase-stable pulses with the carrier wavelength of 10.2 µm through two-color filamentation in nitrogen. The carrier-envelope phase (CEP) of the MIR pulse is passively stabilized and controlled by the attosecond time delay between the two-color input pulses. The duration of the MIR pulse is 13.7 fs, which corresponds to 0.402 cycles. The absolute value of the CEP of the generated sub-half-cycle pulse is consistent with a simple four-wave difference frequency generation model. We have also found that the 10 kHz repetition rate of the light source causes the fluctuation of the pulse energy on a few hundred millisecond time scale.
我们通过在氮气中的双色成丝实验证明了产生载波波长为10.2 µm的亚半周期相位稳定脉冲。中红外脉冲的载波包络相位(CEP)通过双色输入脉冲之间的阿秒时间延迟被被动稳定和控制。中红外脉冲的持续时间为13.7 fs,对应于0.402个周期。所产生的亚半周期脉冲的CEP绝对值与一个简单的四波差频产生模型一致。我们还发现光源10 kHz的重复频率导致脉冲能量在几百毫秒的时间尺度上波动。