activity
20172025
most citedOptical coherence of Er:YO ceramics for telecommunication quantum technologies

35 citations · 39 across the 6 of their papers we have counts for

collaborators

9 papers

physics.app-ph2025

Thin-film magnomechanics in the low gigahertz regime

Yu Jiang, Zixin Yan, Yizhong Huang +1

The coherent interaction between magnons and phonons in the low-GHz regime represents an unexplored frontier in hybrid magnonics, critical for quantum information processing and mi…

cond-mat.mes-hall2025

Generation of Ultra-Broadband Frequency Comb in Strongly Bistable Nonlinear Magnonic Resonator

Yu Jiang, Vasyl Tyberkevych, Yizhong Huang +4

Magnonic frequency combs (MFCs) offer a promising route to compact, energy-efficient platforms for on-chip coherent microwave signal generation and processing. Conventional on-chip…

cond-mat.mes-hall2025

Resonance-enhanced Floquet cavity electromagnonics

Amin Pishehvar, Zixin Yan, Zhaoyou Wang +5

Floquet engineering has been recently recognized as an important tool for manipulating the coherent magnon-photon interaction in cavity electromagnonics systems at microwave freque…

quant-ph2025

Coherent manipulation of interacting electron qubitson solid neon

Xinhao Li, Yizhong Huang, Xu Han +3

Electrons trapped on solid neon surfaces serve as low-noise charge qubits with long coherence times and high operational fidelities. Such charge qubits offer full electrical contro…

quant-ph2025

Solid neon as a noise-resilient host for electron qubits above 100 mK

Xinhao Li, Christopher S. Wang, Brennan Dizdar +7

Solid neon can be used as a solid host for single-electron qubits, and at temperatures of around 10 mK, electron-on-solid-neon charge qubits exhibit long coherence times and high o…

quant-ph2023★ 3 cited

Dual epitaxial telecom spin-photon interfaces with correlated long-lived coherence

Shobhit Gupta, Yizhong Huang, Shihan Liu +4

Optically active solid-state spin qubits thrive as an appealing technology for quantum interconnect and quantum networking, owing to their atomic size, scalable creation, long-live…