论文标题
基于硅芯片的高质量光子纠缠
High-quality photonic entanglement based on a silicon chip
论文作者
论文摘要
量子和综合光子学的富有成果的关联有望使用紧凑和可扩展的系统产生,操纵和检测光的量子状态。整合在电信波长范围内产生高质量光子纠缠所需的所有建筑块仍然是一个重大挑战,这主要是由于芯片片上光排斥过滤器的性能有限。我们报告了一个独立的,符合电信的设备,该设备将单个基材,非线性光子对生成器和被动泵抑制过滤器集成。使用标准的通道纤维纤维消散器,我们证明了这种集成电路的第一个纠缠量化,显示了两个电信波长频段上能量时纠缠光子的最高原始量子干扰可见性。因此,由于用泵滤波器获得的高水平抑制,可以产生真正纯净的最大纠缠状态。这些结果肯定会进一步促进符合电信标准的更先进和可扩展的光子集成量子系统的发展。
The fruitful association of quantum and integrated photonics holds the promise to produce, manipulate, and detect quantum states of light using compact and scalable systems. Integrating all the building-blocks necessary to produce high-quality photonic entanglement in the telecom wavelength range out of a single chip remains a major challenge, mainly due to the limited performance of on-chip light rejection filters. We report a stand-alone, telecom-compliant, device that integrates, on a single substrate, a nonlinear photon-pair generator and a passive pump rejection filter. Using standard channel-grid fiber demultiplexers, we demonstrate the first entanglement quantification of such a integrated circuit, showing the highest raw quantum interference visibility for energy-time entangled photons over two telecom-wavelength bands. Genuinely pure maximally entangled states can therefore be generated thanks to the high-level of noise suppression obtained with the pump filter. These results will certainly further promote the development of more advanced and scalable photonic-integrated quantum systems compliant with telecommunication standards.