5 papers
Symmetry Constrained Quantum Error Mitigation for the Schwinger Model
Alexander Tomlinson, Graham Van Goffrier, Bipasha Chakraborty +1
Quantum error mitigation (QEM) is at the very heart of near-term quantum simulations and lattice gauge theories are no exceptions, rather their physical symmetries provide natural…
Scalable quantum computation of Quantum Electrodynamics beyond one spatial dimension
Zong-Gang Mou, Bipasha Chakraborty
In the Hamiltonian formulation, Quantum Field Theory calculations scale exponentially with spatial volume, making real-time simulations intractable on classical computers and motiv…
Spontaneous symmetry breaking in a non-Abelian lattice gauge theory in D with quantum algorithms
Sandip Maiti, Debasish Banerjee, Bipasha Chakraborty +1
The simulation of various properties of quantum field theories is rapidly becoming a testing ground for demonstrating the prowess of quantum algorithms. Some examples include the p…
Towards the phase diagram of fermions coupled with quantum links in -D
Graham Van Goffrier, Debasish Banerjee, Bipasha Chakraborty +2
Quantum link models (QLMs) are generalizations of Wilson's lattice gauge theory formulated with finite-dimensional link Hilbert spaces. In certain cases, the non-Abelian Gauss Law…
Working group 1 summary: , , , and semileptonic/leptonic decays
Bipasha Chakraborty, Alex Gilman, Martin Hoferichter +1
We summarize the program of working group 1 at the 12th Workshop on the CKM Unitarity Triangle, whose main subjects covered , , and first-row unitarity as well as $…