Two-Baryon Systems with Twisted Boundary Conditions
arXiv:1311.7686 · doi:10.1103/PhysRevD.89.074509
Abstract
We explore the use of twisted boundary conditions in extracting the nucleon mass and the binding energy of two-baryon systems, such as the deuteron, from Lattice QCD calculations. Averaging the results of calculations performed with periodic and anti-periodic boundary conditions imposed upon the light-quark fields, or other pair-wise averages, improves the volume dependence of the deuteron binding energy from ~exp(-kappa*L)/L to ~exp(-sqrt(2)kappa*L)/L. However, a twist angle of pi/2 in each of the spatial directions improves the volume dependence from ~exp(-kappa*L)/L to ~exp(-2kappa*L)/L. Twist averaging the binding energy with a random sampling of twist angles improves the volume dependence from ~exp^(-kappa*L)/L to ~exp(-2kappa*L)/L, but with a standard deviation of ~exp(-kappa*L)/L, introducing a signal-to-noise issue in modest lattice volumes. Using the experimentally determined phase shifts and mixing angles, we determine the expected energies of the deuteron states over a range of cubic lattice volumes for a selection of twisted boundary conditions.
20 pages, 3 figures
References in corpus (18)
- Light Nuclei and Hypernuclei from Quantum Chromodynamics in the Limit of SU(3) Flavor Symmetry
- Evidence for a Bound H-dibaryon from Lattice QCD
- S and D-wave phase shifts in isospin-2 pi pi scattering from lattice QCD
- Nuclear Physics from Lattice QCD
- Scalar mesons in a finite volume
- Scalar mesons moving in a finite volume and the role of partial wave mixing
- Twenty-first Century Lattice Gauge Theory: Results from the QCD Lagrangian
- Two-Nucleon Systems in a Finite Volume: (I) Quantization Conditions
- Magnetic moments of light nuclei from lattice quantum chromodynamics
- The pion's electromagnetic form factor at small momentum transfer in full lattice QCD
- Two-Nucleon Systems in a Finite Volume: (II) 3S1-3D1 Coupled Channels and the Deuteron
- Hadronic form factors in Lattice QCD at small and vanishing momentum transfer
- Fitting two nucleons inside a box: exponentially suppressed corrections to the Luscher's formula
- Lüscher's finite size method with twisted boundary conditions: an application to - system to search for narrow resonance
- Flavor Twisted Boundary Conditions, Pion Momentum, and the Pion Electromagnetic Form Factor
- Uncertainty Quantification in Lattice QCD Calculations for Nuclear Physics
- The kaon semileptonic form factor with near physical domain wall quarks
- Partial twisting for scalar mesons
Cited by in corpus (48)
- Hadronic molecules
- The states: experimental and theoretical status and perspectives
- Scattering processes and resonances from lattice QCD
- Digitization of Scalar Fields for Quantum Computing
- Multichannel one-to-two transition amplitudes in a finite volume
- Multichannel 0-to-2 and 1-to-2 transition amplitudes for arbitrary spin particles in a finite volume
- Baryon-Baryon Interactions and Spin-Flavor Symmetry from Lattice Quantum Chromodynamics
- Twist-averaged boundary conditions for nuclear pasta Hartree-Fock calculations
- The Magnetic Structure of Light Nuclei from Lattice QCD
- Preparations for Quantum Simulations of Quantum Chromodynamics in 1+1 Dimensions: (II) Single-Baryon -Decay in Real Time
- Hadrons and Nuclei
- Nuclear matrix elements from lattice QCD for electroweak and beyond-Standard-Model processes
- Volume Dependence of N-Body Bound States
- Order parameters and color-flavor center symmetry in QCD
- Multi-particle systems on the lattice and chiral extrapolations: a brief review
- Chiral Lagrangian from Duality and Monopole Operators in Compactified QCD
- Hadron-Hadron Interactions from Lattice QCD: isospin-2 scattering length
- Form factors of two-hadron states from a covariant finite-volume formalism
- New Ideas in Constraining Nuclear Forces
- Finite-volume effects due to spatially non-local operators
- A variational study of two-nucleon systems with lattice QCD
- Low-energy Scattering and Effective Interactions of Two Baryons at MeV from Lattice Quantum Chromodynamics
- Theoretical aspects of quantum electrodynamics in a finite volume with periodic boundary conditions
- Time-dependent density functional theory with twist-averaged boundary conditions
- Constraining coupled-channel amplitudes in finite-volume
- Consistency checks for two-body finite-volume matrix elements: I. Conserved currents and bound states
- Breaking and restoration of rotational symmetry on the lattice for bound state multiplets
- Uncertainty Quantification in Lattice QCD Calculations for Nuclear Physics
- Nuclear Reactions from Lattice QCD
- Study of decuplet baryon resonances from lattice QCD
- On the Extraction of Low-energy Constants of Single- and Double- Decays from Lattice QCD: A Sensitivity Analysis
- Extrapolating Lattice QCD Results using Effective Field Theory
- Two-neutrino double-beta decay in pionless effective field theory from a Euclidean finite-volume correlation function
- Applying Twisted Boundary Conditions for Few-body Nuclear Systems
- Few-body bound states and resonances in finite volume
- Scalable Quantum Simulations of Scattering in Scalar Field Theory on 120 Qubits
- Generalized Lüscher's Formula in Multichannel Baryon-Baryon Scattering
- Bound states on the lattice with partially twisted boundary conditions
- Exponential reduction of finite volume effects with twisted boundary conditions
- Breaking and restoration of rotational symmetry for irreducible tensor operators on the lattice
- Breaking and restoration of rotational symmetry in the low-energy spectrum of light alpha-conjugate nuclei on the lattice I: and
- Pseudoscalar mesons in a finite cubic volume with twisted boundary conditions
- P-Wave Two-Particle Bound and Scattering States in a Finite Volume including QED
- Renormalization of a Contact Interaction on a Lattice
- Sequency Hierarchy Truncation (SeqHT) for Adiabatic State Preparation and Time Evolution in Quantum Simulations
- Towards the large volume limit - A method for lattice QCD + QED simulations
- Simulating collider physics on quantum computers using effective field theories
- Formal Developments for Lattice QCD with Applications to Hadronic Systems