activity
20052026
most citedGeneral Relativistic Simulations of Magnetized Plasmas around Merging Supermassive Black Holes

102 citations · 102 across the 2 of their papers we have counts for

collaborators

12 papers

quant-ph2026

A digitally controlled silicon quantum processing unit

Members of the HRL Quantum Team, Collaborators, : +255

Commercially-relevant quantum computers will require large numbers of high-performing qubits that can be manufactured, integrated, and controlled at scale. Silicon exchange-only (E…

astro-ph.HE2012★ 102 cited

General Relativistic Simulations of Magnetized Plasmas around Merging Supermassive Black Holes

Bruno Giacomazzo, John G. Baker, M. Coleman Miller +2

Coalescing supermassive black hole binaries are produced by the mergers of galaxies and are the most powerful sources of gravitational waves accessible to space-based gravitational…

quant-ph2011

Schrödinger-Newton "collapse" of the wave function

J. R. van Meter

It has been suggested that the nonlinear Schrödinger-Newton equation might approximate the coupling of quantum mechanics with gravitation, particularly in the context of the Møller…

gr-qc2010

Black-hole binaries, gravitational waves, and numerical relativity

Joan M. Centrella, John G. Baker, Bernard J. Kelly +1

Understanding the predictions of general relativity for the dynamical interactions of two black holes has been a long-standing unsolved problem in theoretical physics. Black-hole m…

astro-ph.HE2010

A General Formula for Black Hole Gravitational Wave Kicks

James R. van Meter, M. Coleman Miller, John G. Baker +2

Although the gravitational wave kick velocity in the orbital plane of coalescing black holes has been understood for some time, apparently conflicting formulae have been proposed f…

astro-ph.HE2009

Modeling Flows Around Merging Black Hole Binaries

James R. van Meter, John H. Wise, M. Coleman Miller +6

Coalescing massive black hole binaries are produced by the mergers of galaxies. The final stages of the black hole coalescence produce strong gravitational radiation that can be de…