activity
20242026
collaborators

8 papers

quant-ph2026

Host-guest Crystal Engineering Tailors the Room Temperature Spin Dynamics in Molecular Quantum Devices

Ziqiu Huang, Angus Cowley-Semple, Irena Nevjestic +5

Molecular materials that enable coherent control over an electron's spin state at room temperature are promising candidates for quantum technologies, including quantum sensors and…

quant-ph2026

Heterogeneous Optically-Detected Spin-Acoustic Resonance in Solid-State Molecular Thin-film

Kuan-Cheng Chen, Yongqiang Wen, Xiaotian Xu +7

We report an implementation of spin-acoustic resonance in pentacene thin films integrated on a high-quality-factor (high-Q) surface acoustic wave (SAW) resonator on a lithium nioba…

quant-ph2026

Cavity-QED Simulation of a Maser beyond the Mean-Field Approximation

Niall Randall Carrera, Yining Jiang, Xinpeng Shu +2

Based on the well-known Tavis-Cummings (TC) model of cavity quantum electrodynamics (QED), we introduce a method for quantum-mechanically simulating the dynamics of experimental ma…

quant-ph2026

Surveying optically addressable spin qubits for quantum information and sensing technology

Calysta A. Tesiman, Mark Oxborrow, Max Attwood

Quantum technologies offer ways to solve certain tasks more quickly, efficiently, and with greater precision than their classical counterparts. Yet substantial challenges remain in…

physics.optics2026

Scaleable LED-pumped Room-temperature Maser using a Multi-blade Optical Injector

Mingyang Liu, Zike Cheng, Ziqiu Huang +3

Though the performance of room-temperature masers has improved over the last decade, relatively little attention has been paid to the optics used to pump the maser's gain medium. I…

quant-ph2026

Single-LED-pumped, room-temperature, solid-state maser

Michael Newns, Shirley Xu, Mingyang Liu +5

Through their ability to achieve cryogenic levels of noise performance while operating at room temperature, optically-pumped, solid-state (OPSS) masers show great promise as quantu…