most citedSingle-particle digitization strategy for quantum computation of a scalar field theory

68 citations · 68 across the 1 of their papers we have counts for

collaborators

5 papers

hep-th202068 cited

Single-particle digitization strategy for quantum computation of a scalar field theory

João Barata, Niklas Mueller, Andrey Tarasov +1

Motivated by the parton picture of high energy quantum chromodynamics, we develop a single-particle digitization strategy for the efficient quantum simulation of relativistic scatt…

hep-ph2020

The role of the chiral anomaly in polarized deeply inelastic scattering I: Finding the triangle graph inside the box diagram in Bjorken and Regge asymptotics

Andrey Tarasov, Raju Venugopalan

We revisit the role of the chiral "triangle" anomaly in deeply inelastic scattering (DIS) of electrons off polarized protons employing a powerful worldline formalism. We demonstrat…

hep-th2020

Computing real time correlation functions on a hybrid classical/quantum computer

Niklas Mueller, Andrey Tarasov, Raju Venugopalan

Quantum devices may overcome limitations of classical computers in studies of nuclear structure functions and parton Wigner distributions of protons and nuclei. In this talk, we di…

hep-th2019

Deeply inelastic scattering structure functions on a hybrid quantum computer

Niklas Mueller, Andrey Tarasov, Raju Venugopalan

We outline a strategy to compute deeply inelastic scattering structure functions using a hybrid quantum computer. Our approach takes advantage of the representation of the fermion…

hep-ph2019

Structure functions at small x from world-lines. I: Unpolarized distributions

Andrey Tarasov, Raju Venugopalan

The world-line representation of quantum field theory is a powerful framework for the computation of perturbative multi-leg Feynman amplitudes. In particular, in gauge theories, it…