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在具有空间变化耦合的非均匀展宽系综中的超辐射激光发射。

Superradiant lasing in inhomogeneously broadened ensembles with spatially varying coupling.

作者信息

Bychek Anna, Hotter Christoph, Plankensteiner David, Ritsch Helmut

机构信息

Institute for Theoretical Physics, University of Innsbruck, Innsbruck, 6020, Austria.

出版信息

Open Res Eur. 2021 Sep 22;1:73. doi: 10.12688/openreseurope.13781.2. eCollection 2021.

Abstract

: Theoretical studies of superradiant lasing on optical clock transitions predict a superb frequency accuracy and precision closely tied to the bare atomic linewidth. Such a superradiant laser is also robust against cavity fluctuations when the spectral width of the lasing mode is much larger than that of the atomic medium. Recent predictions suggest that this unique feature persists even for a hot and thus strongly broadened ensemble, provided the effective atom number is large enough. : Here we use a second-order cumulant expansion approach to study the power, linewidth and lineshifts of such a superradiant laser as a function of the inhomogeneous width of the ensemble including variations of the spatial atom-field coupling within the resonator. : We present conditions on the atom numbers, the pump and coupling strengths required to reach the buildup of collective atomic coherence as well as scaling and limitations for the achievable laser linewidth. : We show how sufficiently large numbers of atoms subject to strong optical pumping can induce synchronization of the atomic dipoles over a large bandwidth. This generates collective stimulated emission of light into the cavity mode leading to narrow-band laser emission at the average of the atomic frequency distribution. The linewidth is orders of magnitudes smaller than that of the cavity as well as the inhomogeneous gain broadening and exhibits reduced sensitivity to cavity frequency noise.

摘要

关于光钟跃迁上的超辐射激光的理论研究预测,其具有与裸原子线宽紧密相关的超高频率精度和准度。当激光模式的光谱宽度远大于原子介质的光谱宽度时,这种超辐射激光器对腔涨落也具有鲁棒性。最近的预测表明,只要有效原子数足够大,即使对于热的因而强烈展宽的系综,这一独特特性依然存在。

在这里,我们使用二阶累积量展开方法来研究这种超辐射激光器的功率、线宽和线移,它们是系综非均匀宽度的函数,包括谐振腔内空间原子 - 场耦合的变化。

我们给出了达到集体原子相干增强所需的原子数、泵浦强度和耦合强度的条件,以及可实现的激光线宽的标度和限制。

我们展示了大量受到强光泵浦的原子如何能够在大带宽上诱导原子偶极子的同步。这会产生向腔模的集体受激发光,导致在原子频率分布平均值处的窄带激光发射。其线宽比腔的线宽以及非均匀增益展宽小几个数量级,并且对腔频率噪声的敏感度降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5dbe/10451024/7fa36e18488d/openreseurope-1-15259-g0000.jpg

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