Fermion conformal bootstrap in 4d

被引:0
作者
Denis Karateev
Petr Kravchuk
Marco Serone
Alessandro Vichi
机构
[1] Institute of Physics,School of Natural Sciences
[2] EPFL,undefined
[3] Institute for Advanced Study,undefined
[4] SISSA and INFN — Sezione di Trieste,undefined
[5] ICTP,undefined
来源
Journal of High Energy Physics | / 2019卷
关键词
Conformal Field Theory; Field Theories in Higher Dimensions; Nonperturbative Effects;
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摘要
We apply numerical conformal bootstrap techniques to the four-point function of a Weyl spinor in 4d non-supersymmetric CFTs. We find universal bounds on operator dimensions and OPE coefficients, including bounds on operators in mixed symmetry representations of the Lorentz group, which were inaccessible in previous bootstrap studies. We find discontinuities in some of the bounds on operator dimensions, and we show that they arise due to a generic yet previously unobserved “fake primary” effect, which is related to the existence of poles in conformal blocks. We show that this effect is also responsible for similar discontinuities found in four-fermion bootstrap in 3d, as well as in the mixed-correlator analysis of the 3d Ising CFT. As an important byproduct of our work, we develop a practical technology for numerical approximation of general 4d conformal blocks.
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