collaborators

5 papers

quant-ph2026

A K-band Kinetic Inductance Parametric Amplifier Near the Quantum Limit

Chaofan Wang, Shihan Liu, Yufeng Wu +4

Advancing superconducting quantum devices to higher operating frequencies broadens their functionality and enables operation at elevated temperatures, but it also requires near-qua…

quant-ph2026

A frequency-agile microwave-optical interface for superconducting qubits

Yufeng Wu, Yiyu Zhou, Haoqi Zhao +4

Superconducting quantum processors operate at microwave frequencies in millikelvin environments, making it challenging to interconnect distant nodes using conventional microwave wi…

quant-ph2025

Hidden Structural Variants in ALD NbN Superconducting Trilayers Revealed by Atomistic Analysis

Prachi Garg, Danqing Wang, Hong X. Tang +1

Microscopic inhomogeneity within superconducting films is a critical bottleneck hindering the performance and scalability of quantum circuits. All-nitride Josephson Junctions (JJs)…

quant-ph2025

All-nitride superconducting qubits based on atomic layer deposition

Danqing Wang, Yufeng Wu, Naomi Pieczulewski +6

The development of large-scale quantum processors benefits from superconducting qubits that can operate at elevated temperatures and be fabricated with scalable, foundry-compatible…

quant-ph2025

Broad Spectrum Coherent Frequency Conversion with Kinetic Inductance Superconducting Metastructures

Yufeng Wu, Chaofan Wang, Danqing Wang +3

Parametric frequency converters (PFCs) play a critical role in bridging the frequency gap between quantum information carriers. PFCs in the microwave band are particularly importan…