English

$C_T$ for Non-unitary CFTs in Higher Dimensions

High Energy Physics - Theory 2016-06-29 v4

Abstract

The coefficient CTC_T of the conformal energy-momentum tensor two-point function is determined for the non-unitary scalar CFTs with four- and six-derivative kinetic terms. The results match those expected from large-NN calculations for the CFTs arising from the O(N)O(N) non-linear sigma and Gross-Neveu models in specific even dimensions. CTC_T is also calculated for the CFT arising from (n1)(n-1)-form gauge fields with derivatives in 2n+22n+2 dimensions. Results for (n1)(n-1)-form theory extended to general dimensions as a non-gauge-invariant CFT are also obtained; the resulting CTC_T differs from that for the gauge-invariant theory. The construction of conformal primaries by subtracting descendants of lower-dimension primaries is also discussed. For free theories this also leads to an alternative construction of the energy-momentum tensor, which can be quite involved for higher-derivative theories.

Keywords

Cite

@article{arxiv.1603.07307,
  title  = {$C_T$ for Non-unitary CFTs in Higher Dimensions},
  author = {Hugh Osborn and Andreas Stergiou},
  journal= {arXiv preprint arXiv:1603.07307},
  year   = {2016}
}

Comments

19 pages. v2: References added, discussion expanded, typos fixed. v3: Note added including a derivation of eq. (2.13). v4: Minor clarifications, version to appear in JHEP