Hsiao Ya-Fen, Tsai Pin-Ju, Lin Chi-Ching, Chen Yong-Fan, Yu Ite A, Chen Ying-Cheng
Opt Lett. 2014 Jun 15;39(12):3394-7. doi: 10.1364/OL.39.003394.
We present an experimental study of the coherence properties of amplified slow light by four-wave mixing (FWM) in a three-level electromagnetically induced transparency (EIT) system driven by one additional pump field. High energy gain (up to 19) is obtained with a weak pump field (a few mW/cm2) using optically dense cold atomic gases. A large fraction of the amplified light is found to be phase incoherent to the input signal field. The dependence of the incoherent fraction on pump field intensity and detuning and the control field intensity is systematically studied. With the classical input pulses, our results support a recent theoretical study by Lauk et al. [Phys. Rev. A88, 013823 (2013)], showing that the noise resulting from the atomic dipole fluctuations associated with spontaneous decay is significant in the high gain regime. This effect has to be taken into consideration in EIT-based applications in the presence of FWM.
我们展示了在由一个额外泵浦场驱动的三能级电磁诱导透明(EIT)系统中,通过四波混频(FWM)对放大慢光的相干特性进行的实验研究。使用光学致密的冷原子气体,在弱泵浦场(几毫瓦/平方厘米)下获得了高能量增益(高达19)。发现大部分放大光与输入信号场相位不相干。系统地研究了非相干部分对泵浦场强度、失谐和控制场强度的依赖性。对于经典输入脉冲,我们的结果支持了Lauk等人[《物理评论A》88, 013823 (2013)]最近的理论研究,表明在高增益 regime 中,与自发衰变相关的原子偶极涨落产生的噪声是显著的。在存在FWM的基于EIT的应用中,必须考虑这种效应。