collaborators

9 papers

quant-ph2026

Zero-field identification and control of hydrogen-related electron-nuclear spin registers in diamond

Alexander Ungar, Hao Tang, Andrew Stasiuk +5

Spin defects in diamond serve as powerful building blocks for quantum technologies, especially for applications in quantum sensing and quantum networking. Electron-nuclear defects…

physics.chem-ph2026

Enhancing Spin Coherence of Optically-Addressed Molecular Qubit by Nuclear Spin Hyperpolarization

Boning Li, Patrick Hautle, Duhan Zhang +6

Optically addressable molecular triplet spins provide a chemically tunable platform for quantum application, but their coherence is often limited by interactions with surrounding s…

quant-ph2026

Approaching the Limit in Multiparameter AC Magnetometry with Quantum Control

Takuya Isogawa, Zhiyao Hu, Ayumi Kanamoto +9

Simultaneously estimating multiple parameters at the ultimate limit is a central challenge in quantum metrology, often hindered by inherent incompatibilities in optimal estimation…

cond-mat.mes-hall2025

Robust AC vector sensing at zero magnetic field with pentacene

Boning Li, Garrett Heller, Jungbae Yoon +6

Quantum sensors based on electronic spins have emerged as powerful probes of microwave-frequency fields. Among other solid-state platforms, spins in molecular crystals offer a rang…

quant-ph2025

Quantum Sensing of Copper-Phthalocyanine Electron Spins via NV Relaxometry

Boning Li, Xufan Li, Yifan Quan +2

Molecular spin systems are promising candidates for quantum information processing and nanoscale sensing, yet their characterization at room temperature remains challenging due to…

physics.chem-ph2025

Exploring the mechanisms of transverse relaxation of copper(II)-phthalocyanine spin qubits

Boning Li, Yifan Quan, Xufan Li +4

Molecular spin qubits are promising candidates for quantum technologies, but their performance is limited by decoherence arising from diverse mechanisms. The complexity of the envi…