We present results from our recent lattice QCD study of Nπ scattering in the positive-parity nucleon channel, where the puzzling Roper resonance N*(1440) resides in experiment. Using a variety of hadron operators, that include qqq-like, Nπ in p-wave and Nσ in s-wave, we systematically extract the excited lattice spectrum in the nucleon channel up to 1.65 GeV. Our lattice results indicate that Nπ scattering in the elastic approximation alone does not describe a low-lying Roper. Coupled channel effects between Nπ and Nππ seem to be crucial to render a low-lying Roper in experiment, reinforcing the notion that this state could be a dynamically generated resonance. After giving a brief motivation for studying the Roper channel and the relevant ...
We present a new method for extracting excited states from a single two-point correlation function c...
Our recent first-principles lattice-QCD exploration of the ground and first eleven excited states of...
AbstractWe present a new method for extracting excited states from a single two-point correlation fu...
We present results from our recent lattice QCD study of Nπ scattering in the positive-parity nucleon...
cf. https://arxiv.org/abs/1806.02363We present a lattice QCD study of the puzzling positive-parity n...
We present a lattice QCD study of N pi scattering in the positive-parity nucleon channel, where the ...
A comprehensive study of the positive and negative parity, isospin = ½, spin = ½ energy eigenstates ...
Published 29 May 2018Two different effective field theory descriptions of the pion-nucleon scatterin...
The positive-parity nucleon spectrum is explored in 2 + 1 flavor lattice QCD in a search for new low...
Using a correlation matrix analysis consisting of a variety of smearings, the CSSM Lattice collab-or...
Copyright © 2009 Elsevier B.V. All rights reserved.We present results for the first positive parity ...
The low-lying even-parity states of the nucleon are explored in lattice QCD using the PACS-CS collab...
We apply the eigenvectors from a variational analysis in lattice QCD to successfully extract the wav...
AbstractWe present results for the first positive parity excited state of the nucleon, namely, the R...
We apply the eigenvectors from a variational analysis in lattice QCD to successfully extract the wav...
We present a new method for extracting excited states from a single two-point correlation function c...
Our recent first-principles lattice-QCD exploration of the ground and first eleven excited states of...
AbstractWe present a new method for extracting excited states from a single two-point correlation fu...
We present results from our recent lattice QCD study of Nπ scattering in the positive-parity nucleon...
cf. https://arxiv.org/abs/1806.02363We present a lattice QCD study of the puzzling positive-parity n...
We present a lattice QCD study of N pi scattering in the positive-parity nucleon channel, where the ...
A comprehensive study of the positive and negative parity, isospin = ½, spin = ½ energy eigenstates ...
Published 29 May 2018Two different effective field theory descriptions of the pion-nucleon scatterin...
The positive-parity nucleon spectrum is explored in 2 + 1 flavor lattice QCD in a search for new low...
Using a correlation matrix analysis consisting of a variety of smearings, the CSSM Lattice collab-or...
Copyright © 2009 Elsevier B.V. All rights reserved.We present results for the first positive parity ...
The low-lying even-parity states of the nucleon are explored in lattice QCD using the PACS-CS collab...
We apply the eigenvectors from a variational analysis in lattice QCD to successfully extract the wav...
AbstractWe present results for the first positive parity excited state of the nucleon, namely, the R...
We apply the eigenvectors from a variational analysis in lattice QCD to successfully extract the wav...
We present a new method for extracting excited states from a single two-point correlation function c...
Our recent first-principles lattice-QCD exploration of the ground and first eleven excited states of...
AbstractWe present a new method for extracting excited states from a single two-point correlation fu...