activity
20242026
collaborators

8 papers

physics.atom-ph2026

Exact Semiclassical Phase Shifts for Relativistic Atom Interferometers in Flat Spacetime

Hunter Swan, Jason M. Hogan

Atom interferometry is a sensitive tool for measuring relativistic effects, but there are no known non-trivial exact solutions for relativistic atom interferometer phase shifts. He…

physics.atom-ph2026

Cumulative Fidelity of LMT Clock Atom Interferometers in the Presence of Laser Noise

Yijun Jiang, Jan Rudolph, Jason M. Hogan

Clock atom interferometry is an emerging technique in precision measurements that is particularly well suited for sensitivity enhancement through large momentum transfer (LMT). Whi…

gr-qc2026

deci-Hz Gravitational Wave Observations on the Moon and Beyond

Emanuele Berti, Marica Branchesi, Alessandra Buonanno +21

This document summarizes talks and discussions from the workshop "deci-Hz Gravitational Wave Observations on the Moon and Beyond" that took place at Johns Hopkins University betwee…

physics.optics2026

High-fidelity holographic beam shaping with optimal transport and phase diversity

Hunter Swan, Andrii Torchylo, Michael J. Van de Graaff +2

A phase-only spatial light modulator (SLM) provides a powerful way to shape laser beams into arbitrary intensity patterns, but at the cost of a hard computational problem of determ…

physics.atom-ph2025

Atom Interferometer Phase Shear and Spacetime Sectional Curvature

Hunter Swan, Jason M. Hogan

Atom interferometry is a natural laboratory for precision tests of general relativity, but there is no simple relationship between atom interferometer phase and geometric propertie…

physics.atom-ph2025

Collinear Three-Photon Excitation of a Strongly Forbidden Optical Clock Transition

Samuel P. Carman, Jan Rudolph, Benjamin E. Garber +7

The clock transition in strontium serves as the foundation for the world's best atomic clocks and for gravitational wave detector concepts…