6 papers
Controllable Superconductivity in Suspended van der Waals Materials
Ruihuan Fang, Cuiju Yu, Youqiang Huang +12
Tunable superconductors provide a versatile platform for advancing next-generation quantum technologies. Here, we demonstrate controllable superconductivity in suspended NbSe2 thin…
Observation of tunable chiral spin textures with nonlinear optics
Youqiang Huang, Tiago V. C. Antao, Adolfo O. Fumega +14
Chiral spin textures, such as spin spirals and skyrmions, are key to advancing spintronics by enabling ultrathin, energy-efficient memory, and high-density data storage and process…
Photonics in Flatland: Challenges and Opportunities for Nanophotonics with 2D Semiconductors
Ali Azimi, Julien Barrier, Angela Barreda +45
Two-dimensional (2D) semiconductors are emerging as a versatile platform for nanophotonics, offering unprecedented tunability in optical properties through exciton resonance engine…
Systematic investigation of the generation of luminescent emitters in hBN via irradiation engineering
Pooja C. Sindhuraj, José M. Caridad, Corné Koks +9
Hexagonal boron nitride (hBN), a two-dimensional (2D) material, garners interest for hosting bright quantum emitters at room temperature. A great variety of fabrication processes h…
On-chip integrated light sources with MoS2/WSe2 moiré superlattices at telecom wavelengths
Xingyu Huang, Hanlin Fang, Shima Kadkhodazadeh +5
On-chip integrated light sources are essential for photonic integrated circuits, requiring waveguides to interface various components, from light sources to detectors. Two-dimensio…
Collective single-photon emission and energy transfer in thin-layer dielectric and plasmonic systems
Mads A. Jørgensen, Devashish Pandey, Ehsan Amooghorban +3
We study the collective photon decay of multiple quantum emitters embedded in a thin high-index dielectric layer such as hexagonal boron nitride (hBN), with and without a metal sub…