Nucleon Polarisabilities at and Beyond Physical Pion Masses
arXiv:1511.01952 · doi:10.1140/epja/i2016-16139-5
Abstract
We examine the results of Chiral Effective Field Theory (EFT) for the scalar- and spin-dipole polarisabilities of the proton and neutron, both for the physical pion mass and as a function of . This provides chiral extrapolations for lattice-QCD polarisability computations. We include both the leading and sub-leading effects of the nucleon's pion cloud, as well as the leading ones of the resonance and its pion cloud. The analytic results are complete at NLO in the -counting for pion masses close to the physical value, and at leading order for pion masses similar to the Delta-nucleon mass splitting. In order to quantify the truncation error of our predictions and fits as \% degree-of-belief intervals, we use a Bayesian procedure recently adapted to EFT expansions. At the physical point, our predictions for the spin polarisabilities are, within respective errors, in good agreement with alternative extractions using experiments and dispersion-relation theory. At larger pion masses we find that the chiral expansion of all polarisabilities becomes intrinsically unreliable as approaches about MeV---as has already been seen in other observables. EFT also predicts a substantial isospin splitting above the physical point for both the electric and magnetic scalar polarisabilities; and we speculate on the impact this has on the stability of nucleons. Our results agree very well with emerging lattice computations in the realm where EFT converges. Curiously, for the central values of some of our predictions, this agreement persists to much higher pion masses. We speculate on whether this might be more than a fortuitous coincidence.
39 pages LaTeX2e (pdflatex) including 12 figures as 16 .pdf files using includegraphics. Version approved for publication in EPJA includes modifications, clarifications and removal of typographical errors in refereeing and publication process
References in corpus (25)
- Improved chiral nucleon-nucleon potential up to next-to-next-to-next-to-leading order
- Electromagnetic excitation of the Delta(1232)-resonance
- Light hadron spectroscopy using domain wall valence quarks on an Asqtad sea
- Electromagnetic mass splittings of the low lying hadrons and quark masses from 2+1 flavor lattice QCD+QED
- Using effective field theory to analyse low-energy Compton scattering data from protons and light nuclei
- The Electromagnetic Self-Energy Contribution to M_p - M_n and the Isovector Nucleon Magnetic Polarizability
- Compton scattering from the proton in an effective field theory with explicit Delta degrees of freedom
- Magnetic moments of light nuclei from lattice quantum chromodynamics
- Extracting Nucleon Magnetic Moments and Electric Polarizabilities from Lattice QCD in Background Electric Fields
- Bayesian Methods for Parameter Estimation in Effective Field Theories
- Electromagnetic and spin polarisabilities in lattice QCD
- Quark mass variation constraints from Big Bang nucleosynthesis
- Neutron electric polarizability from unquenched lattice QCD using the background field approach
- New Measurement of Compton Scattering from the Deuteron and an Improved Extraction of the Neutron Electromagnetic Polarizabilities
- Chiral extrapolation of g_A with explicit Delta(1232) degrees of freedom
- Measurements of Double-Polarized Compton Scattering Asymmetries and Extraction of the Proton Spin Polarizabilities
- Predictions of covariant chiral perturbation theory for nucleon polarisabilities and polarised Compton scattering
- Sea contributions to the electric polarizability of the hadrons
- Convergence of the chiral expansion for the nucleon mass
- Dispersive estimate of the electromagnetic charge symmetry violation in the octet baryon masses
- Electromagnetic Contribution to the Proton-Neutron Mass Splitting
- Higher order forward spin polarizability
- Probing the convergence of perturbative series in baryon chiral perturbation theory
- Neutron in a Strong Magnetic Field: Finite Volume Effects
- Reconciling the lattice background field method with nonrelativistic QED: Spinor case
Cited by in corpus (25)
- Nuclear effective field theory: status and perspectives
- Nucleon Polarizabilities: from Compton Scattering to Hydrogen Atom
- Probabilistic definition of the perturbative theoretical uncertainty from missing higher orders
- Forward doubly-virtual Compton scattering off the nucleon in chiral perturbation theory: II. Spin polarizabilities and moments of polarized structure functions
- Designing Optimal Experiments: An Application to Proton Compton Scattering
- Proton scalar dipole polarizabilities from real Compton scattering data, using fixed-t subtracted dispersion relations and the bootstrap method
- Generalized polarizabilities of the nucleon in baryon chiral perturbation theory
- Finite volume effects on the electric polarizability of neutral hadrons in lattice QCD
- Octet Baryons in Large Magnetic Fields
- Spin polarizabilities of the proton by measurement of Compton double-polarization observables
- Spin-dependent sum rules connecting real and virtual Compton scattering verified
- Chiral Effective Theory Methods and their Application to the Structure of Hadrons from Lattice QCD
- Comprehensive Study of Observables in Compton Scattering on the Nucleon
- Elastic Compton Scattering from 3He and the Role of the Delta
- Compton scattering from He at the TUNL HIS facility
- Proton Compton Scattering from Linearly Polarized Gamma Rays
- Nucleon polarizabilities in covariant baryon chiral perturbation theory with explicit degrees of freedom
- Single-pion contribution to the Gerasimov--Drell--Hearn sum rule and related integrals
- Does Bayesian Model Averaging improve polynomial extrapolations? Two toy problems as tests
- Electric structure of shallow D-wave states in Halo EFT
- First concurrent extraction of the leading-order scalar and spin proton polarizabilities
- Theoretical evaluation of solar proton-proton fusion reaction rate and its uncertainties
- Magnetic Polarisability of Octet Baryons via Lattice QCD
- Compton Scattering from the Deuteron above Pion-Production Threshold
- Energy of a point-like neutron in an external electromagnetic field