Practical Quantum Sensing Technologies & Spin–Acoustic Interfaces
My experimental work investigates deployable quantum sensing platforms and hybrid interfaces that operate under realistic laboratory and device constraints. I focus on molecular spin systems, microwave/EPR readout, active pre-cooling of microwave resonators, and optically detected spin–acoustic resonance in solid-state thin films.
Representative topics include:
- optically detected spin–acoustic resonance in molecular thin-film platforms;
- surface-acoustic-wave devices and spin–phonon coupling;
- active pre-cooling for improving microwave measurement sensitivity;
- photoexcited molecular electron spins for practical quantum sensing and information processing;
- hybrid optical, microwave, and acoustic interfaces for sensing-oriented quantum technologies.
Selected outputs: Communications Physics 2026, Physical Review Applied 2025, Materials for Quantum Technology 2024, Optics Express 2020.