2023/06/09 by Lattice Strong Dynamics Collaboration, R. C. Brower, Brower, R. C. +21 · 7 citations
Physics and Astronomy · #Black Holes and Theoretical Physics #FOS: Physical sciences #High Energy Physics - Lattice (hep-lat) #High Energy Physics - Phenomenology (hep-ph) #Particle physics theoretical and experimental studies #Quantum Chromodynamics and Particle Interactions
paper · pdf · doi:10.48550/arxiv.2306.06095
openalex publication_date 2023/06/09 · openalex created_date 2023/06/13 · openalex updated_date 2026/08/01
<strong>Decoding File Names</strong>: Consider the file name f8l24t48b48m00889S0.csv. We will break down the meaning of the various pieces of the filename "f8" means 8 Dirac flavors. "l24t48" means 24<sup>3</sup>×48 lattice. "b48" means beta=4.8, related to the inverse bare gauge coupling. "m00889" means fermion mass m=0.00889. "S" means flavor-singlet scalar meson. Other options are "P" for flavor non-singlet pseudoscalar meson and "C" for flavor non-singlet scalar meson. "0" an integer from 0 to 4 proportional to the squared length of the spatial momentum vector of the correlation function. <strong>Columns of the CSV files</strong>: Each line of the CSV file should contain 41 entries, separated by commas. Refer to the Eq. (8) which defines model A in the accompanying paper to understand the physical interpretation of these parameters. Model number: 1 is model A, 2 is model B, 3 is model C. n<sub>max</sub>: the number of non-oscillating states in the fit. j<sub>max</sub>: the number of oscillating states in the fit. t<sub>min</sub>: the minimum t value used in the fit. t<sub>max</sub>: the maximum t value used in the fit. 𝜒<sup>2</sup> of the fit. \(log p(.M|D)\): log of model probability used in Bayesian model averaging. fit value for c<sub>0</sub> (model A) or \(c0\) (model B). fit error for c<sub>0</sub> (model A) or \(c0\) (model B). fit value for c<sub>1</sub>. fit error for c<sub>1</sub>. fit value for c<sub>2</sub>. fit error for c<sub>2</sub>. fit value for c<sub>3</sub>. fit error for c<sub>3</sub>. fit value for c<sub>4</sub>. fit error for c<sub>4</sub>. fit value for \(c1^′\). fit error for \(c1^′\) fit value for \(c2^′\). fit error for \(c2^′\). fit value for \(c3^′\). fit error for \(c3^′\). fit value for \(c4^′\). fit error for \(c4^′\). fit value for \(log(E2 - E1)\). fit error for \(log(E2-E1)\). fit value for \(log(E3-E2)\). fit error for \(log(E3-E2)\). fit value for \(log(E4-E3)\). fit error for \(log(E4-E3)\). fit value for \(log(E2^′ - E1^′)\). fit error for \(log(E2^′ - E1^′)\). fit value for \(log(E3^′ - E2^′)\). fit error for \(log(E3^′ - E2^′)\). fit value for \(log(E4^′ - E3^′)\). fit error for \(log(E4^′ - E3^′)\). fit value for \(log(E1)\). fit error for \(log(E1)\). fit value for \(log(E1^′)\). fit error for \(log(E1^′)\).