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Universal pair polaritons in a strongly interacting Fermi gas

机译:普遍对极性磁性在强烈互动的费米气体中

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摘要

Directly coupling cavity photons to the photo-association resonances of pairs of atoms in a strongly interacting Fermi gas generates pair polaritons-hybrid excitaions coherently mixing photons, atom pairs and molecules.Cavity quantum electrodynamics (QED) manipulates the coupling of light with matter, and allows several emitters to couple coherently with one light mode(1). However, even in a many-body system, the light-matter coupling mechanism has so far been restricted to one-body processes. Leveraging cavity QED for the quantum simulation of complex, many-body systems has thus far relied on multi-photon processes, scaling down the light-matter interaction to the low energy and slow time scales of the many-body problem(2-5). Here we report cavity QED experiments using molecular transitions in a strongly interacting Fermi gas, directly coupling cavity photons to pairs of atoms. The interplay of strong light-matter and strong interparticle interactions leads to well-resolved pair polaritons-hybrid excitations coherently mixing photons, atom pairs and molecules. The dependence of the pair-polariton spectrum on interatomic interactions is universal, independent of the transition used, demonstrating a direct mapping between pair correlations in the ground state and the optical spectrum. This represents a magnification of many-body effects by two orders of magnitude in energy. In the dispersive regime, it enables fast, minimally destructive measurements of pair correlations, and opens the way to their measurement at the quantum limit and their coherent manipulation using dynamical, quantized optical fields.
机译:直接耦合腔光子于在强相互作用的费米气体中对成对原子的光关联共振产生对极性杂交通知的一对偏振子 - 杂交提示,相干地混合光子,原子对和分子。Cavity量子电动动力学(QED)操纵光的耦合,并且允许几个发射器与一个光模式相干(1)相处耦合。然而,即使在许多身体系统中,迄今为止灯具耦合机构已经被限制在一体的过程中。利用腔QED用于量子仿真复杂,许多机身系统依赖于多光子过程,将浅点相互作用缩小到多体问题的低能量和慢速时间尺度(2-5) 。在这里,我们在强烈相互作用的费米气体中使用分子转变来报告腔QED实验,直接耦合腔光子成对原子。强光物质和强颗粒间相互作用的相互作用导致分解的对极性晶体 - 混合激发相干混合光子,原子对和分子。对极性谱对交互态相互作用的依赖性是通用的,与所使用的过渡无关,在地态和光谱中展示了对相关之间的直接映射。这代表了在能量中两个数量级的许多体效应的放大率。在分散制度中,它能够快速,最小地破坏对相关的测量,并使用动态量化光场在量子极限下的测量和它们的相干操作来开放方式。

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  • 来源
    《Nature》 |2021年第7873期|509-513|共5页
  • 作者单位

    Inst Phys EPFL Lausanne Switzerland;

    Inst Phys EPFL Lausanne Switzerland;

    Inst Phys EPFL Lausanne Switzerland;

    Inst Phys EPFL Lausanne Switzerland;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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