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Improved Lattice Radial Quantization

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arxiv 1407.7597 v1 pith:HWYMP4LD submitted 2014-07-28 hep-lat

Improved Lattice Radial Quantization

classification hep-lat
keywords latticequantizationradialconformalimprovedmathbbapproachargued
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

Lattice radial quantization was proposed in a recent paper by Brower, Fleming and Neuberger[1] as a nonperturbative method especially suited to numerically solve Euclidean conformal field theories. The lessons learned from the lattice radial quantization of the 3D Ising model on a longitudinal cylinder with 2D Icosahedral cross-section suggested the need for an improved discretization. We consider here the use of the Finite Element Methods(FEM) to descretize the universally-equivalent $\phi^4$ Lagrangian on $\mathbb R \times \mathbb S^2$. It is argued that this lattice regularization will approach the exact conformal theory at the Wilson-Fisher fixed point in the continuum. Numerical tests are underway to support this conjecture.

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  1. Lectures on Semiclassical Methods for Composite Operators

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    Lecture notes develop semiclassical methods to compute large-n scaling dimensions of composite operators in CFTs, recovering known results in free theory and deriving one-loop corrections at the Wilson-Fisher fixed point.