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arXiv:1908.05500·v2·High Energy Physics — Lattice

Numerical determination of monopole scaling dimension in parity-invariant three-dimensional non-compact QED

Nikhil Karthik🇺🇸 · Rajamani Narayanan🇺🇸

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Abstract

We present a direct Monte-Carlo determination of the scaling dimension of a topological defect operator in the infrared fixed point of a three-dimensional interacting quantum field theory. For this, we compute the free energy to introduce the background gauge field of the monopole-antimonopole pair in three-dimensional non-compact QED with and flavors of massless two-component fermions, and study its asymptotic logarithmic dependence on the monopole-antimonopole separation. We estimate the scaling dimension in the case to be consistent with the large- (free fermion) value. We find the deviations from this large- value for and are positive but small, implying that the higher order corrections in the large- expansion become mildly important for .

Comments: 18 pages, 6 figures, minor changes

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