ftint: Calculating gradient-flow integrals with pySecDec
arXiv:2407.16529 · doi:10.1016/j.cpc.2024.109384
Abstract
The program ftint is introduced which numerically evaluates dimensionally regulated integrals as they occur in the perturbative approach to the gradient-flow formalism in quantum field theory. It relies on sector decomposition in order to determine the coefficients of the individual orders in , where is the space-time dimension. For that purpose, it implements an interface to the public library pySecDec. The current version works for massive and massless integrals up to three-loop level with vanishing external momenta, but the underlying method is extendable to more general cases.
30 pages, 1 figure; v2: matches published version; the program ftint is available from https://gitlab.com/ftint/ftint
References in corpus (26)
- Properties and uses of the Wilson flow in lattice QCD
- FORM version 4.0
- Perturbative analysis of the gradient flow in non-abelian gauge theories
- High-precision scale setting in lattice QCD
- Trivializing maps, the Wilson flow and the HMC algorithm
- Infinite N phase transitions in continuum Wilson loop operators
- pySecDec: a toolbox for the numerical evaluation of multi-scale integrals
- FIESTA 4: optimized Feynman integral calculations with GPU support
- Feynman Integral Evaluation by a Sector decomposiTion Approach (FIESTA)
- Numerical evaluation of multi-loop integrals by sector decomposition
- Chiral symmetry and the Yang--Mills gradient flow
- Sector Decomposition
- FIESTA 3: cluster-parallelizable multiloop numerical calculations in physical regions
- FIESTA 2: parallelizeable multiloop numerical calculations
- A GPU compatible quasi-Monte Carlo integrator interfaced to pySecDec
- Confirming the Existence of the strong CP Problem in Lattice QCD with the Gradient Flow
- FeynGame
- Energy-momentum tensor from the Yang-Mills gradient flow
- The two-loop energy-momentum tensor within the gradient-flow formalism
- A geometric method of sector decomposition
- Numerical Scattering Amplitudes with pySecDec
- Thermodynamics in quenched QCD: energy--momentum tensor with two-loop order coefficients in the gradient flow formalism
- Four quark operators for kaon bag parameter with gradient flow
- Short flow-time coefficients of CP-violating operators
- Effective electroweak Hamiltonian in the gradient-flow formalism
- Short-flow-time expansion of quark bilinears through next-to-next-to-leading order QCD