9 citations · 9 across the 3 of their papers we have counts for
5 papers · 1 filter
Persistent State Method for Resonances on Classical and Quantum Computers
Cong-Wu Wang, Lukas Bovermann, Evgeny Epelbaum +4
We introduce a new method for extracting resonance pole positions that does not require non-Hermitian extensions of a Hamiltonian. The complex resonance poles are extracted from un…
Ab initio - scattering with high-fidelity chiral interactions
Avik Sarkar, Serdar Elhatisari, Timo A. Lähde +1
Low-energy - scattering underlies stellar helium burning and sharply tests nuclear forces in the reaction regime. We present its first calculation using the high-fidelity N3L…
Floating block method for quantum Monte Carlo simulations
Avik Sarkar, Dean Lee, Ulf-G. Meißner
Quantum Monte Carlo simulations are powerful and versatile tools for the quantum many-body problem. In addition to the usual calculations of energies and eigenstate observables, qu…
Self-learning Emulators and Eigenvector Continuation
Avik Sarkar, Dean Lee
Emulators that can bypass computationally expensive scientific calculations with high accuracy and speed can enable new studies of fundamental science as well as more potential app…
Convergence of Eigenvector Continuation
Avik Sarkar, Dean Lee
Eigenvector continuation is a computational method that finds the extremal eigenvalues and eigenvectors of a Hamiltonian matrix with one or more control parameters. It does this by…