超导电性
材料科学
光电子学
纳米技术
物理
凝聚态物理
作者
Chenguang Wang,Wuyue Xu,Chong Li,Lili Shi,Junliang Jiang,Tingting Guo,Wencheng Yue,Tianyu Li,Ping Zhang,Yang-Yang Lyu,Jiazheng Pan,Xiu–Hao Deng,Ying Dong,Xuecou Tu,Sining Dong,Chunhai Cao,Labao Zhang,Xiaoqing Jia,Guozhu Sun,Lin Kang
标识
DOI:10.1038/s41467-024-48224-1
摘要
Abstract Frequency combs, specialized laser sources emitting multiple equidistant frequency lines, have revolutionized science and technology with unprecedented precision and versatility. Recently, integrated frequency combs are emerging as scalable solutions for on-chip photonics. Here, we demonstrate a fully integrated superconducting microcomb that is easy to manufacture, simple to operate, and consumes ultra-low power. Our turnkey apparatus comprises a basic nonlinear superconducting device, a Josephson junction, directly coupled to a superconducting microstrip resonator. We showcase coherent comb generation through self-started mode-locking. Therefore, comb emission is initiated solely by activating a DC bias source, with power consumption as low as tens of picowatts. The resulting comb spectrum resides in the microwave domain and spans multiple octaves. The linewidths of all comb lines can be narrowed down to 1 Hz through a unique coherent injection-locking technique. Our work represents a critical step towards fully integrated microwave photonics and offers the potential for integrated quantum processors.
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