collaborators

5 papers

physics.app-ph2026

Ultra-low damping of the translational motion of a composite graphite rod in a magneto-gravitational trap

Connor E. Murphy, Cody Jessup, Tahereh Naderishahab +5

We demonstrate an ultra-low dissipation, one-dimensional mechanical oscillator formed by levitating a millimeter-scale composite graphite rod in a room-temperature magneto-gravitat…

gr-qc2026

GRHayL: a modern, infrastructure-agnostic, extensible library for GRMHD simulations

Samuel Cupp, Leonardo R. Werneck, Terrence Pierre Jacques +2

Interpreting multimessenger signals from neutron stars and black holes requires reliable general relativistic magnetohydrodynamics (GRMHD) simulations across rapidly evolving high-…

gr-qc2025

Gravitational-Wave Signatures of Massive Black Hole Formation

Bernard J. Kelly, Sarah Gossan, Leonardo R. Werneck +5

Direct-collapse black holes (DCBHs) are an important component of the massive black hole population of the early universe, and their formation and early mergers will be prominent i…

gr-qc2025

General relativistic hydrodynamics code for dynamical spacetimes with curvilinear coordinates, tabulated equations of state, and neutrino physics

Terrence Pierre Jacques, Samuel Cupp, Leonardo R. Werneck +3

Many astrophysical systems of interest to numerical relativity-such as rapidly rotating stars, black hole accretion disks, and core-collapse supernovae-exhibit near-symmetries. The…

gr-qc2025

Accelerating Numerical Relativity with Code Generation: CUDA-enabled Hyperbolic Relaxation

Samuel D. Tootle, Leonardo R. Werneck, Thiago Assumpção +2

Next-generation gravitational wave detectors such as Cosmic Explorer, the Einstein Telescope, and LISA, demand highly accurate and extensive gravitational wave (GW) catalogs to fai…