超晶格
光子学
光电子学
材料科学
连贯性(哲学赌博策略)
硅
硅光子学
干扰(通信)
纳米技术
光发射
波长
光子晶体
氮化硅
慢光
光纤
石墨烯
相干长度
二硫化钼
光学
制作
光通信
作者
Xingyu Huang,Hanlin Fang,Shima Kadkhodazadeh,Monia Runge Nielsen,Youqiang Huang,Qiaoling Lin,Zhipei Sun,Martijn Wubs,Sanshui Xiao
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-08-07
卷期号:12 (32): eaef5518-eaef5518
标识
DOI:10.1126/sciadv.aef5518
摘要
Moiré superlattices have been widely explored as a unique platform for investigating exotic physics, but their potential applications in integrated photonics remain unexplored. In this work, we demonstrate a waveguide-integrated light source operating at telecom wavelengths with high temporal coherence, enabled by molybdenum disulfide (MoS 2 )/tungsten diselenide (WSe 2 ) moiré superlattices coupled to a silicon photonic nanobeam cavity. Our results reveal that, at room temperature, the moiré potential in MoS 2 /WSe 2 superlattices strongly boosts light-emission intensity, extends interlayer-exciton lifetime, and redshifts the emission wavelength. Our demonstrated device shows excellent coherence properties with near-unity interference visibility and a coherence length of about 3.8 millimeters, substantially exceeding the performance of previously reported two-dimensional–material light sources. Moreover, these devices exhibit stable performance under ambient conditions, operating within the fiber communication O-band. This work paves the way for leveraging moiré superlattices as a promising material for photonic integrated circuits, highlighting their potential to enhance light-matter interactions and expand the capabilities of on-chip photonic technologies.
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