I present an overview of recent progress in the study of multi-hadron systems in lattice QCD. After reviewing the recent developments that are beginning to enable nuclear physics to be studied from the underlying theory of the Standard Model, I discuss the recent results that have been obtained in multi-hadron systems. I also explore the difficulties particular to lattice QCD calculations of such systems and emphasise the issues that remain to be resolved
One of the overarching goals of nuclear physics is to rigorously compute properties of hadronic syst...
In 2018, the USQCD Collaboration’s Executive Committee organized several subcommittees to recognize ...
Lattice Gauge Theory enables an ab initio study of the low-energy properties of Quantum Chromodynami...
I present an overview of recent progress in the study of nuclear physics in lattice QCD and provide ...
In this talk I am reviewing recent calculations of properties of multi-hadron systems in lattice QCD...
Recent progress in Lattice QCD is highlighted. After a brief introduction to the methodology of latt...
We study multi-quark (3Q,4Q,5Q) systems in lattice QCD. We perform the detailed studies of multi-qua...
Recent progress in Lattice QCD is highlighted. After a brief introduction to the methodology of latt...
Explorations of the properties of light nuclear systems beyond their lowestlying spectra have begun ...
With ever increasing computational resources and improvements in algorithms, new opportunities are e...
Recent progresses of lattice QCD studies for hadron spectroscopy and interactions are briefly review...
Lattice quantum chromodynamics (QCD) will soon become the primary theoretical tool in rigorous studi...
I review the current status of lattice QCD results. I concentrate on new analytical developments and...
Systems with the quantum numbers of up to twelve charged and neutral pseudoscalar mesons, as well as...
Recent progress in hadron structure calculations within lattice QCD is reviewed. Results on key obse...
One of the overarching goals of nuclear physics is to rigorously compute properties of hadronic syst...
In 2018, the USQCD Collaboration’s Executive Committee organized several subcommittees to recognize ...
Lattice Gauge Theory enables an ab initio study of the low-energy properties of Quantum Chromodynami...
I present an overview of recent progress in the study of nuclear physics in lattice QCD and provide ...
In this talk I am reviewing recent calculations of properties of multi-hadron systems in lattice QCD...
Recent progress in Lattice QCD is highlighted. After a brief introduction to the methodology of latt...
We study multi-quark (3Q,4Q,5Q) systems in lattice QCD. We perform the detailed studies of multi-qua...
Recent progress in Lattice QCD is highlighted. After a brief introduction to the methodology of latt...
Explorations of the properties of light nuclear systems beyond their lowestlying spectra have begun ...
With ever increasing computational resources and improvements in algorithms, new opportunities are e...
Recent progresses of lattice QCD studies for hadron spectroscopy and interactions are briefly review...
Lattice quantum chromodynamics (QCD) will soon become the primary theoretical tool in rigorous studi...
I review the current status of lattice QCD results. I concentrate on new analytical developments and...
Systems with the quantum numbers of up to twelve charged and neutral pseudoscalar mesons, as well as...
Recent progress in hadron structure calculations within lattice QCD is reviewed. Results on key obse...
One of the overarching goals of nuclear physics is to rigorously compute properties of hadronic syst...
In 2018, the USQCD Collaboration’s Executive Committee organized several subcommittees to recognize ...
Lattice Gauge Theory enables an ab initio study of the low-energy properties of Quantum Chromodynami...