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