activity
20172021
most citedFrom deep inelastic scattering to heavy-flavor semi-leptonic decays: Total rates into multi-hadron final states from lattice QCD

109 citations · 112 across the 2 of their papers we have counts for

collaborators
Showing hep-latShow all

8 papers · 1 filter

hep-lat2021

Density of States of the lattice Schwinger model

Irene Papaefstathiou, Daniel Robaina, J. Ignacio Cirac +1

Using a recently introduced tensor network method, we study the density of states of the lattice Schwinger model, a standard testbench for lattice gauge theory numerical techniques…

hep-lat2021

Multicanonical reweighting for the QCD topological susceptibility

P. Thomas Jahn, Parikshit M. Junnarkar, Guy D. Moore +1

We introduce a reweighting technique which allows for a continuous sampling of temperatures in a single simulation and employ it to compute the temperature dependence of the QCD to…

hep-lat2020

Simulating 2+1d lattice gauge theory with iPEPS

Daniel Robaina, Mari Carmen Bañuls, J. Ignacio Cirac

We simulate a zero-temperature pure Lattice Gauge Theory in 2+1 dimensions by using an iPEPS (Infinite Projected Entangled-Pair State) ansatz for the ground state. O…

hep-lat20203 cited

Improved Reweighting for QCD Topology at High Temperature

P. Thomas Jahn, Guy D. Moore, Daniel Robaina

In a previous paper \cite{Jahn:2018dke} we presented a methodology for computing the topological susceptibility of QCD at temperatures where it is small and standard methods fail.…

hep-lat2018

Topological Susceptibility to High Temperatures via Reweighting

P. Thomas Jahn, Guy D. Moore, Daniel Robaina

We measure the topological susceptibility of quenched QCD on the lattice at two high temperatures. For this, we define topology with the help of gradient flow and mitigate the stat…

hep-lat2018

in pure-glue QCD through reweighting

P. Thomas Jahn, Guy D. Moore, Daniel Robaina

We calculate the topological susceptibility at 2.5 Tc and 4.1 Tc in SU(3) pure Yang-Mills theory. We define topology with the help of gradient flow and we largely overcome the prob…