论文标题
原子束连续超级激光的相关性和线宽
Correlations and linewidth of the atomic beam continuous superradiant laser
论文作者
论文摘要
我们提出了一个简约的模型来说明连续超级激光器的主要特性,其中一束原子横穿高技能Fabry-Perrot腔的模式,并将光集体集体发射到空腔模式中。我们专注于弱单原子 - 腔合作性的情况,并强调相关的状态,在这种情况下,由于有限的过境时间在自发发射上占主导地位。我们提出了一种原始方法,其中原子的动力学进入和离开腔的动力是由哈密顿过程描述的。这允许在无需随机方法的情况下得出超级激光的主要动力学方程。我们得出了持续发射的分析条件,并表明最终线宽是由集体原子偶极子的基本量子波动设定的。我们计算两体相关因子的稳态值,并表明连续的超级制度与原子原子相关性的生长有关,尽管这些相关性仅对激光线宽的影响很小。
We propose a minimalistic model to account for the main properties of a continuous superradiant laser, in which a beam of atoms crosses the mode of a high-finesse Fabry-Perot cavity, and collectively emits light into the cavity mode. We focus on the case of weak single atom - cavity cooperativity, and highlight the relevant regime where decoherence due to the finite transit time dominates over spontaneous emission. We propose an original approach where the dynamics of atoms entering and leaving the cavity is described by a Hamiltonian process. This allows deriving the main dynamical equations for the superradiant laser, without the need for a stochastic approach. We derive analytical conditions for a sustained emission and show that the ultimate linewidth is set by the fundamental quantum fluctuations of the collective atomic dipole. We calculate steady-state values of the two-body correlators and show that the continuous superradiant regime is tied to the growth of atom-atom correlations, although these correlations only have a small impact on the laser linewidth.