A numerical polology sampler maps ghost- and tachyon-free regions of bosonic EFT coupling spaces and finds new particle branches, including a spin-one mode in general rank-2 tensor theories.
Weinberg, Phenomenological Lagrangians, Physica A 96, 327 (1979)
5 Pith papers cite this work. Polarity classification is still indexing.
years
2026 5representative citing papers
Heavy hadron chiral perturbation theory predicts giant electric polarizabilities for D star mesons from near-degenerate pion thresholds and flavor-dependent values for doubly heavy baryons.
Heavy baryon chiral perturbation theory at O(p^4) finds small higher-order corrections to electric polarizabilities of singly charmed baryons, larger corrections to magnetic polarizabilities linked to transition moments, spin polarizabilities smaller than nucleons except for γ_M1M1, and generally st
Within a restricted low-energy spin-sector ansatz for n-p scattering, direction-averaged magic is locally minimized at the CP-conserving point heta-bar=0 when the effective phase equals heta/4 or lies in specific windows.
Perturbative N3LO calculations in chiral EFT with RG-guided power counting yield robust predictions for light nuclei energies when calibrated on the tritium binding energy.
citing papers explorer
-
Numerical polology: towards next-generation model-building for cosmology
A numerical polology sampler maps ghost- and tachyon-free regions of bosonic EFT coupling spaces and finds new particle branches, including a spin-one mode in general rank-2 tensor theories.
-
Electromagnetic polarizabilities of the triplet hadrons in heavy hadron chiral perturbation theory
Heavy hadron chiral perturbation theory predicts giant electric polarizabilities for D star mesons from near-degenerate pion thresholds and flavor-dependent values for doubly heavy baryons.
-
Classical and spin polarizabilities of singly heavy baryons within heavy baryon chiral perturbation theory
Heavy baryon chiral perturbation theory at O(p^4) finds small higher-order corrections to electric polarizabilities of singly charmed baryons, larger corrections to magnetic polarizabilities linked to transition moments, spin polarizabilities smaller than nucleons except for γ_M1M1, and generally st
-
Local Minimum of Spin-Sector Magic at the CP-Conserving Point in Low-Energy Neutron-Proton Scattering
Within a restricted low-energy spin-sector ansatz for n-p scattering, direction-averaged magic is locally minimized at the CP-conserving point heta-bar=0 when the effective phase equals heta/4 or lies in specific windows.
-
Perturbative calculations of light nuclei up to N$^3$LO in chiral effective field theory
Perturbative N3LO calculations in chiral EFT with RG-guided power counting yield robust predictions for light nuclei energies when calibrated on the tritium binding energy.