Welcome to the new version of CaltechAUTHORS. Login is currently restricted to library staff. If you notice any issues, please email coda@library.caltech.edu
Published August 2016 | Submitted + Published
Journal Article Open

Precision islands in the Ising and O(N ) models

Abstract

We make precise determinations of the leading scaling dimensions and operator product expansion (OPE) coefficients in the 3d Ising, O(2), and O(3) models from the conformal bootstrap with mixed correlators. We improve on previous studies by scanning over possible relative values of the leading OPE coefficients, which incorporates the physical information that there is only a single operator at a given scaling dimension. The scaling dimensions and OPE coefficients obtained for the 3d Ising model, (Δ_σ, Δ_ϵ, λ_(σσϵ), λ_(ϵϵϵ)) = (0.5181489(10), 1.412625(10), 1.0518537(41), 1.532435(19) , give the most precise determinations of these quantities to date.

Additional Information

© 2016 The Author(s). Received: June 6, 2016 Accepted: July 6, 2016 Published: August 4, 2016 Article funded by SCOAP3. We thank Zohar Komargodski, Slava Rychkov, and Ettore Vicari for comments and discussions. The work of DSD is supported by DOE grant number DE-SC0009988 and a William D. Loughlin Membership at the Institute for Advanced Study. The work of DP and FK is supported by NSF grant 1350180. DP is additionally supported by a Martin A. and Helen Chooljian Founders' Circle Membership at the Institute for Advanced Study. The computations in this paper were run on the Bulldog computing clusters supported by the facilities and staff of the Yale University Faculty of Arts and Sciences High Performance Computing Center, on the Hyperion computing cluster supported by the School of Natural Sciences Computing Staff at the Institute for Advanced Study, and on the CERN cluster.

Attached Files

Published - 10.1007_2FJHEP08_2016_036.pdf

Submitted - 1603.04436.pdf

Files

10.1007_2FJHEP08_2016_036.pdf
Files (2.7 MB)
Name Size Download all
md5:2fca0adb8dd5e2276461056444663178
1.3 MB Preview Download
md5:c85d1454c982969619298c26c0a73a09
1.4 MB Preview Download

Additional details

Created:
August 20, 2023
Modified:
October 17, 2023