17 citations · 41 across the 14 of their papers we have counts for
5 papers · 1 filter
A universal framework for the quantum simulation of Yang-Mills theory
Jad C. Halimeh, Masanori Hanada, Shunji Matsuura +3
We provide a universal framework for the quantum simulation of SU(N) Yang--Mills theories on fault-tolerant digital quantum computers adopting the orbifold lattice formulation. As…
Variational Monte Carlo with Neural Network Quantum States for Yang-Mills Matrix Model
Norbert Bodendorfer, Onur Oktay, Vaibhav Gautam +2
We apply the variational Monte Carlo method based on neural network quantum states, using a neural autoregressive flow architecture as our ansatz, to determine the ground state wav…
Operator algebra, quantum entanglement, and emergent geometry from matrix degrees of freedom
Vaibhav Gautam, Masanori Hanada, Antal Jevicki
For matrix model and QFT, we discuss how dual gravitational geometry emerges from matrix degrees of freedom (specifically, adjoint scalars in super Yang-Mills theory) and how opera…
Wilson Loops and Random Matrices
Georg Bergner, Vaibhav Gautam, Masanori Hanada +1
Linear confinement with Casimir scaling of the string tension in confining gauge theories is a consequence of a certain property of the Polyakov loop related to random matrices. Th…
Toward QCD on Quantum Computer: Orbifold Lattice Approach
Georg Bergner, Masanori Hanada, Enrico Rinaldi +1
We propose an orbifold lattice formulation of QCD suitable for quantum simulations. We show explicitly how to encode gauge degrees of freedom into qubits using noncompact variables…