论文标题
波导QED中超级原子的刺激发射
Stimulated emission of superradiant atoms in waveguide QED
论文作者
论文摘要
我们研究了由相干态光子脉冲诱导的波导耦合的超级原子的刺激发射。当短$π$脉冲入射时,我们提供了一个分析结果,这表明原子发射光子在输出脉冲中相干,该脉冲在短脉冲极限内保持连贯状态。入射脉冲以相位扩增的方式放大,在相位空间中,几乎完全在相位方向上添加噪声。该特性改善了足够短的脉冲放大后强度信号与噪声的比率。这是与一般相位保护线性放大器不同的独特功能,在扩增过程中,信噪比会恶化。我们还讨论了光子发射概率对脉冲参数(例如脉冲面积和持续时间)的依赖性。
We investigate the stimulated emission of superradiant atoms coupled to a waveguide induced by a coherent-state photon pulse. We provide an analytical result when a short $π$ pulse is incident, which shows that the atoms emit photons coherently into the output pulse, which remains a coherent state in the short pulse limit. An incident pulse is amplified in phase-preserving manner, where noise is added almost entirely in the phase direction in phase space. This property improves the ratio of intensity signal to noise after the amplification for sufficiently short pulses. This is a unique feature different from general phase-preserving linear amplifiers, where the signal-to-noise ratio deteriorates in the amplification process. We also discuss the dependence of the photon-emission probability on pulse parameters, such as the pulse area and the duration.