论文标题
来自温暖原子的单模量子非高斯光
Single-mode Quantum Non-Gaussian Light from Warm Atoms
论文作者
论文摘要
量子平台的分布式量子信息处理和杂交提高了对光结合相互作用质量和实现有效量子接口的需求的提高。对于拥有基本量子非高斯(QNG)方面的必要国家,这变得尤其具有挑战性。它们对应于量子技术的大多数有效应用中的最重要资源。我们演示了单模态度中可调节温暖的原子集合的QNG特征的发光产生。在存在由大原子热运动引起的脱碳作用的情况下,在自发的四波混合过程中生成光。尽管对任何多余噪声的敏感性都很高,但由于快速共振激发,较大的光谱带宽以及源几何保证的谐振光子的低吸收损失,可以实现预示QNG光的直接观察性。
The distributed quantum information processing and hybridization of quantum platforms raises increasing demands on the quality of light-matter interaction and realization of efficient quantum interfaces. This becomes particularly challenging for needed states possessing fundamental quantum non-Gaussian (QNG) aspects. They correspond to paramount resources in most potent applications of quantum technologies. We demonstrate the generation of light with provably QNG features from a tunable warm atomic ensemble in a single-mode regime. The light is generated in a spontaneous four-wave mixing process in the presence of decoherence effects caused by a large atomic thermal motion. Despite its high sensitivity to any excess noise, a direct observability of heralded QNG light could be achieved due to a combination of a fast resonant excitation, large spectral bandwidth, and a low absorption loss of resonant photons guaranteed by the source geometry.