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91探花
Theoretical physicists working at a blackboard collaboration pod in the Beecroft building.
Credit: Jack Hobhouse

Paul Fendley

Professor and Senior Research Fellow, All Souls College

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Condensed Matter Theory
paul.fendley@physics.ox.ac.uk
Telephone: 01865 (2)73957
Rudolf Peierls Centre for Theoretical Physics, room 70.32
  • About
  • Publications

BPS and non-BPS states in a supersymmetric Landau-Ginzburg theory

Journal of High Energy Physics Springer Nature 2003:01 (2003) 053

Authors:

Alin Tirziu, Paul Fendley

Exact S-matrices for supersymmetric sigma models and the Potts model

Journal of Physics A: Mathematical and Theoretical IOP Publishing 35:50 (2002) 10675

Authors:

Paul Fendley, Nicholas Read

Classical dimers on the triangular lattice

Physical Review B - Condensed Matter and Materials Physics 66:21 (2002) 2145131-21451314

Authors:

P Fendley, R Moessner, SL Sondhi

Abstract:

We study the classical hard-core dimer model on the triangular lattice. Following Kasteleyn's fundamental theorem on planar graphs, this problem is soluble using Pfaffians. This model is particularly interesting for, unlike the dimer problems on the bipartite square and hexagonal lattices, its correlations are short ranged with a correlation length of less than one lattice constant. We compute the dimer-dimer and monomer-monomer correlators, and find that the model is deconfining: the monomer-monomer correlator falls off exponentially to a constant value 0.1494..., only slightly below the nearest-neighbor value of 1/6. We also consider the anisotropic triangular lattice model in which the square lattice is perturbed by diagonal bonds of one orientation and small fugacity. We show that the model becomes noncritical immediately and that this perturbation is equivalent to adding a mass term to each of two Majorana fermions that are present in the long wavelength limit of the square lattice problem.

Classical dimers on the triangular lattice

Physical Review B American Physical Society (APS) 66:21 (2002) 214513

Authors:

P Fendley, R Moessner, SL Sondhi

Lattice Models with N=2 Supersymmetry

(2002)

Authors:

Paul Fendley, Kareljan Schoutens, Jan de Boer

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