Konorov S O, Fedotov A B, Zheltikov A M
Department of Physics, International Laser Center, M. V. Lomonosov Moscow State University, 119899 Moscow, Russia.
Opt Lett. 2003 Aug 15;28(16):1448-50. doi: 10.1364/ol.28.001448.
Hollow-core photonic-crystal fibers are shown to substantially enhance four-wave mixing (FWM) of laser pulses in a gas filling the fiber core. Picosecond pulses of Nd:YAG fundamental radiation and its second harmonic are used to generate a signal at the frequency of the third harmonic by the FWM process 3omega = 2omega + 2omega - omega. The efficiency achieved for this process in a 9-cm-long, 13-microm-hollow-core-diameter photonic-crystal fiber, designed to simultaneously transmit a two-color pump and the FWM signal, is shown to be approximately 800 times higher than the maximum FWM efficiency attainable with the same laser pulses in the tight-focusing regime.
研究表明,空心光子晶体光纤可显著增强填充在光纤纤芯中的气体内激光脉冲的四波混频(FWM)。利用Nd:YAG基频辐射及其二次谐波的皮秒脉冲,通过3ω = 2ω + 2ω - ω的四波混频过程产生三次谐波频率的信号。在一根9厘米长、空心纤芯直径为13微米的光子晶体光纤中实现了该过程的效率,该光纤设计用于同时传输双色泵浦光和四波混频信号,结果显示其效率比在紧聚焦条件下使用相同激光脉冲所能达到的最大四波混频效率高出约800倍。