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A steady-state superradiant laser with less than one intracavity photon

机译:腔内光子少于一个的稳态超辐射激光器

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摘要

The spectral purity of an oscillator is central to many applications, such as detecting gravity waves, defining the second, ground-state cooling and quantum manipulation of nanomechanical objects, and quantum computation. Recent proposals suggest that laser oscillators which use very narrow optical transitions in atoms can be orders of magnitude more spectrally pure than present lasers. Lasers of this high spectral purity are predicted to operate deep in the 'bad-cavity', or superradiant, regime, where the bare atomic linewidth is much less than the cavity linewidth. Here we demonstrate a Raman superradiant laser source in which spontaneous synchronization of more than one million rubidium-87 atomic dipoles is continuously sustained by less than 0.2 photons on average inside the optical cavity. By operating at low intracavity photon number, we demonstrate isolation of the collective atomic dipole from the environment by a factor of more than ten thousand, as characterized by cavity frequency pulling measurements. The emitted light has a frequency linewidth, measured relative to the Raman dressing laser, that is less than that of single-particle decoherence linewidths and more than ten thousand times less than the quantum linewidth limit typically applied to 'good-cavity' optical lasers, for which the cavity linewidth is much less than the atomic linewidth. These results demonstrate several key predictions for future superradiant lasers, which could be used to improve the stability of passive atomic clocks and which may lead to new searches for physics beyond the standard model.
机译:振荡器的光谱纯度对于许多应用而言至关重要,例如检测重力波,定义第二次基态冷却和纳米机械物体的量子操纵以及量子计算。最近的提议表明,在原子中使用非常窄的光学跃迁的激光振荡器比目前的激光器在光谱上的纯度更高。预计具有这种高光谱纯度的激光器将在“坏腔”或超辐射状态下工作,该状态下裸原子线宽远小于腔体线宽。在这里,我们演示了一个拉曼超辐射激光源,其中在光腔内平均少于0.2个光子连续持续保持超过一百万个-87原子偶极子的自发同步。通过以低腔内光子数进行操作,我们证明了集体原子偶极子与环境之间的隔离度超过了万倍,这是通过腔频拉力测量来表征的。发出的光具有相对于拉曼修整激光器测得的频率线宽,该线宽小于单粒子消相干线宽的线宽,并且比通常应用于“高腔”光学激光器的量子线宽限制小一万倍,其空腔线宽远小于原子线宽。这些结果证明了对未来超辐射激光器的一些关键预测,这些预测可用于提高无源原子钟的稳定性,并可能导致对物理的新探索,超越标准模型。

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  • 来源
    《Nature》 |2012年第7392期|p.78-81|共4页
  • 作者单位

    JILA, NIST and University of Colorado, Department of Physics, University of Colorado, 440 UCB, Boulder, Colorado 80309, USA;

    JILA, NIST and University of Colorado, Department of Physics, University of Colorado, 440 UCB, Boulder, Colorado 80309, USA;

    JILA, NIST and University of Colorado, Department of Physics, University of Colorado, 440 UCB, Boulder, Colorado 80309, USA;

    JILA, NIST and University of Colorado, Department of Physics, University of Colorado, 440 UCB, Boulder, Colorado 80309, USA,Tech-X Corporation, 5621 Arapahoe Avenue, Suite A,Boulder, Colorado 80303, USA;

    JILA, NIST and University of Colorado, Department of Physics, University of Colorado, 440 UCB, Boulder, Colorado 80309, USA;

    JILA, NIST and University of Colorado, Department of Physics, University of Colorado, 440 UCB, Boulder, Colorado 80309, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 02:54:04

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