activity
20242026
collaborators

8 papers

quant-ph2026

Prethermal rotating-frame solid echo in a dipolar nuclear-spin network

Quentin Reynard-Feytis, William Beatrez, Leo Joon Il Moon +2

Floquet prethermalization can endow interacting quantum solids with long-lived, approximately conserved quantities, enabling Hamiltonian engineering and new dynamical probes. Using…

quant-ph2026

Sensing with discrete time crystals

Leo Joon Il Moon, Paul M. Schindler, Ryan J. Smith +4

Prethermal discrete time crystals (PDTCs) are a nonequilibrium state of matter characterized by long-range spatiotemporal order, and exhibiting a subharmonic response stabilized by…

physics.chem-ph2026

DFT-assisted natural abundance 13C zero-field NMR via optical magnetometry

Blake Andrews, Xiao Liu, Raphael Zumbrunn +5

Zero-field (ZF) nuclear magnetic resonance (NMR) spectroscopy probes scalar J-couplings between nuclei while dispensing with large homogeneous magnetic fields, enabling low-cost an…

quant-ph2026

Robust Quantum Sensing via Prethermal Spin Orbits

Enrico Daniel Richter, Ryan J. Smith, Brayden Glockzin +3

Practical performance of quantum sensors is often curtailed by uncontrolled environmental drift (bias-field instability, temperature fluctuations, mechanical vibration), background…

quant-ph2025

Nanoscale engineering and dynamical stabilization of mesoscopic spin textures

Kieren Harkins, Christoph Fleckenstein, Noella D'Souza +16

Thermalization phenomena, while ubiquitous in quantum systems, have traditionally been viewed as obstacles to be mitigated. In this study, we demonstrate the ability, instead, to h…

physics.optics2025

Optically Detected Magnetic Resonance Imaging and Sensing Within Functionalized Additively Manufactured Microporous Structures

Brian W. Blankenship, Yoonsoo Rho, Zachary Jones +7

Quantum sensing with nitrogen-vacancy centers in diamond has emerged as a powerful tool for measuring diverse physical parameters, yet the versatility of these measurement approach…