75 citations · 104 across the 6 of their papers we have counts for
6 papers
A new basis for Hamiltonian SU(2) simulations
Christian W. Bauer, Irian D'Andrea, Marat Freytsis +1
Due to rapidly improving quantum computing hardware, Hamiltonian simulations of relativistic lattice field theories have seen a resurgence of attention. This computational tool req…
Quantum Information Science and Technology for Nuclear Physics. Input into U.S. Long-Range Planning, 2023
Douglas Beck, Joseph Carlson, Zohreh Davoudi +98
In preparation for the 2023 NSAC Long Range Plan (LRP), members of the Nuclear Science community gathered to discuss the current state of, and plans for further leveraging opportun…
Gravitational Wave Backgrounds from Colliding ECOs
Hannah Banks, Dorota M. Grabowska, Matthew McCullough
Long baseline atom interferometers offer an exciting opportunity to explore mid-frequency gravitational waves. In this work we survey the landscape of possible contributions to the…
Analytic expansions of two- and three-particle excited-state energies
Dorota M. Grabowska, Maxwell T. Hansen
The last years have seen significant developments in methods relating two- and three-particle finite-volume energies to scattering observables. These relations hold for both weakly…
A Chiral Solution to the Ginsparg-Wilson Equation
Dorota M. Grabowska, David B. Kaplan
We present a chiral solution of the Ginsparg-Wilson equation. This work is motivated by our recent proposal for nonperturbatively regulating chiral gauge theories, where five-dimen…
The Role of the Electron Mass in Damping Chiral Magnetic Instability in Supernova and Neutron Stars
Dorota Grabowska, David B. Kaplan, Sanjay Reddy
We show that the nonzero electron mass plays a critical role in determining the magnetic properties of neutron stars, making it impossible to generate the chiral charge density nee…