most citedEnhancing Direct Detection of Higgsino Dark Matter

8 citations · 8 across the 3 of their papers we have counts for

collaborators

6 papers

hep-ph2026

Searching for heavy charged relics in the Earth

Reza Ebadi, Peter W. Graham, Surjeet Rajendran +2

We propose a method for detecting an ambient density of heavy, electrically-charged particles. Such particles would impact the Earth, lose energy in terrestrial matter, and become…

hep-ph20268 cited

Enhancing Direct Detection of Higgsino Dark Matter

Peter W. Graham, Harikrishnan Ramani, Samuel S. Y. Wong

While much supersymmetric weakly interacting massive particle (WIMP) parameter space has been ruled out, one remaining important candidate is Higgsino dark matter. The Higgsino can…

hep-ph2026

Heavy-element paleodetectors for Higgsino dark matter

Peter W. Graham, Harikrishnan Ramani, Samuel S. Y. Wong

Paleodetectors have been proposed as a new approach to direct detection of weakly interacting massive particles (WIMPs), through the search for damage tracks in ancient minerals in…

hep-ph2026

Highly Excited Electron Cyclotron for QCD Axion and Dark-Photon Detection

Xing Fan, Gerald Gabrielse, Peter W. Graham +3

We propose using highly excited cyclotron states of a trapped electron to detect meV axion and dark photon dark matter, marking a significant improvement over our previous proposal…

hep-ph2025

Melting LHC detectors: a novel search for stopped long-lived particles

Julia L. Gonski, Peter W. Graham, Surjeet Rajendran +2

Particles at the TeV scale with lifetimes of a year or longer could have been abundantly produced at the LHC yet escaped detection because of backgrounds, and could still be trappe…

hep-ex2025

One-Electron Quantum Cyclotron as a Milli-eV Dark-Photon Detector

Xing Fan, Gerald Gabrielse, Peter W. Graham +6

We propose using trapped electrons as high- resonators for detecting meV dark photon dark matter. When the rest energy of the dark photon matches the energy splitting of the two…