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Operator expansions, layer susceptibility and two-point functions in BCFT

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arxiv 2006.11253 v2 pith:TCMT27DF submitted 2020-06-19 hep-th cond-mat.stat-mech

classification hep-thcond-mat.stat-mech
keywords epsilonexpansiontwo-pointboundaryfunctionlayeroperatorsusceptibility
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We show that in boundary CFTs, there exists a one-to-one correspondence between the boundary operator expansion of the two-point correlation function and a power series expansion of the layer susceptibility. This general property allows the direct identification of the boundary spectrum and expansion coefficients from the layer susceptibility and opens a new way for efficient calculations of two-point correlators in BCFTs. To show how it works we derive an explicit expression for the correlation function $\langle\phi_i \phi^i\rangle$ of the O(N) model at the extraordinary transition in 4-$\epsilon$ dimensional semi-infinite space to order $O(\epsilon)$. The bulk operator product expansion of the two-point function gives access to the spectrum of the bulk CFT. In our example, we obtain the averaged anomalous dimensions of scalar composite operators of the O(N) model to order $O(\epsilon^2)$. These agree with the known results both in $\epsilon$ and large-N expansions.

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  1. Transdimensional Defects

    hep-th 2024-11 conditional novelty 8.0 of 10

    Defects of continuously adjustable dimension p=2+δ are defined and analyzed in the O(N) model, yielding new interfaces and non-local 3d CFTs.

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