activity
20242026
collaborators

14 papers

quant-ph2026

Probing Single-Particle Spatial Extent With Helical Neutron Wavefronts

D. Sarenac, O. Lailey, C. W. Clark +8

Distinguishing transverse coherence length from single-particle wavepacket extent is fundamentally challenging, as both manifest through spatial broadening of observed intensity pr…

physics.med-ph2026

Introduction to Quantum Ophthalmology

Mukhit Kulmaganbetov, Dmitry Pushin, Taranjit Singh +6

Quantum technologies are rapidly advancing across multiple research domains, with a growing impact on biomedical imaging and sensing. We examine their emerging role in ophthalmolog…

quant-ph2026

One knob to tune them all: Phase-controlled photon statistics and linewidth in partially pumped atomic ensembles

Oksana Chelpanova, Martino Stefanini, Dusan Sarenac +2

We study a minimal model of collective light emission from an incoherently driven ensemble of atoms where incoherent drive is applied to only a subset of the atoms and show that bo…

physics.ins-det2026

Environmental Stabilization of Perfect-Crystal Neutron Interferometry Using a Large Vacuum Chamber with Cryogenic Sample Access

Robert Valdillez, David G. Cory, Robert W. Haun +9

Perfect-crystal neutron interferometry has been a useful tool in measuring nuclear-interactions, probing fundamental physics, and exploring quantum phenomenon. Historically, neutro…

physics.app-ph2026

A unified quantum random walk model for internal crystal effects in dynamical diffraction

Owen Lailey, Dusan Sarenac, David G. Cory +2

The theory of dynamical diffraction (DD) in perfect crystals is the backbone of high-precision neutron and X-ray diffraction experiments, enabling accurate determination of crystal…

physics.ins-det2026

A perfect crystal neutron loop cavity

Owen Lailey, Dusan Sarenac, David G. Cory +2

Coherent control of neutrons via Bragg diffraction forms the foundation of perfect crystal neutron interferometry, facilitating both fundamental tests of quantum mechanics and appl…