1 citations · 1 across the 2 of their papers we have counts for
8 papers
Ultralight dark matter detection with trapped-ion interferometry
Leonardo Badurina, Diego Blas, John Ellis +1
We explore how recent advances in the manipulation of single-ion wave packets open new avenues for detecting weak magnetic fields sourced by ultralight dark matter. A trapped ion i…
Improving Neutrino Oscillation Measurements through Event Classification
Sebastian A. R. Ellis, Daniel C. Hackett, Shirley Weishi Li +2
Precise neutrino energy reconstruction is essential for next-generation long-baseline oscillation experiments, yet current methods remain limited by large uncertainties in neutrino…
A Prototype Hybrid Mode Cavity for Heterodyne Axion Detection
Zenghai Li, Kevin Zhou, Marco Oriunno +7
In the heterodyne approach to axion detection, axion dark matter induces transitions between two modes of a microwave cavity, resulting in a parametrically enhanced signal power. W…
The COSMIC WISPers White Paper: The physics case for Weakly Interacting Slim Particles
Ariel Arza, Deniz Aybas, Shyam Balaji +124
Axions and other very weakly interacting slim particles (WISPs), with masses below 1 GeV, arise naturally in many extensions of the Standard Model of particle physics. In particula…
Soft Gravitons, Hard Truths: Infrared Safety of Particle Processes in a Gravitational-Wave Background
Wen-Yuan Ai, Sebastian A. R. Ellis, Josef Pradler
Gravitational waves are thought to propagate unattenuated through matter due to a cancellation between graviton absorption and stimulated emission inferred from leading-order soft-…
Classical (and Quantum) Heuristics for Gravitational Wave Detection
Raffaele Tito D'Agnolo, Sebastian A. R. Ellis
We derive a lower bound on the sensitivity of generic mechanical and electromagnetic gravitational wave detectors. We consider both classical and quantum detection schemes, althoug…