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Overview

Paul Sutcliffe is a researcher affiliated with Durham University in the United Kingdom. Their work spans the field of Physics and Astronomy, with a focus on several subfields including Statistical and Nonlinear Physics, Nuclear and High Energy Physics, Atomic and Molecular Physics and Optics, Computer Networks and Communications, and Condensed Matter Physics.

The research topics they are involved in include:

  • Black Holes and Theoretical Physics
  • Cold Atom Physics and Bose-Einstein Condensates
  • Quantum chaos and dynamical systems
  • Noncommutative and Quantum Gravity Theories
  • Nonlinear Waves and Solitons
  • Nonlinear Dynamics and Pattern Formation
  • Quantum, superfluid, helium dynamics

Their recent papers demonstrate a range of interests within high-energy theoretical physics and nonlinear phenomena. These papers include:

  • "Rational Skyrmions," 2023, Journal of Physics A Mathematical and Theoretical
  • "Spectral curves of hyperbolic monopoles from ADHM," 2021, Journal of Physics A Mathematical and Theoretical
  • "Q-lump scattering," 2023, Journal of High Energy Physics
  • "Colonies of threaded rings in excitable media," 2020, Physical review. E
  • "A hyperbolic analogue of the Atiyah-Hitchin manifold," 2022, Journal of High Energy Physics

Their work has been published predominantly in the following venues:

  • Journal of High Energy Physics
  • Journal of Physics A Mathematical and Theoretical
  • arXiv (Cornell University)
  • Physical review. E

Paul Sutcliffe has collaborated with several other researchers, including frequent co-authors:

  • Derek Harland
  • Fabian Maucher

Best Publications

  • Rational maps, monopoles and skyrmions

    Conor J. Houghton;Nicholas S. Manton;Paul M. Sutcliffe

  • Knots as stable soliton solutions in a three-dimensional classical field theory.

    Richard A. Battye;Paul M. Sutcliffe

  • Symmetric Skyrmions

    Richard Battye;Paul Sutcliffe

  • Stable skyrmions in two-component Bose-Einstein condensates.

    Richard A. Battye;N. R. Cooper;Paul M. Sutcliffe

  • Solitons, links and knots

    Richard A. Battye;Paul M. Sutcliffe

  • Skyrmions, fullerenes and rational maps

    Richard A. Battye;Paul M. Sutcliffe

  • Skyrmions, instantons and holography

    Paul Sutcliffe

  • Knots in the Skyrme-Faddeev model

    Paul Sutcliffe

  • Gauss-Bonnet holographic superconductors

    Luke Barclay;Ruth Gregory;Sugumi Kanno;Paul Sutcliffe

  • BPS Monopoles

    Paul Sutcliffe

  • Polyhedra in Physics, Chemistry and Geometry

    Michael Francis Atiyah;P Sutcliffe

  • Skyrmions and the alpha-particle model of nuclei.

    Richard A Battye;Nicholas S Manton;Paul M Sutcliffe

  • Knot theory in modern chemistry

    Kate E. Horner;Mark A. Miller;Jonathan W. Steed;Paul M. Sutcliffe

  • The geometry of point particles

    Michael Atiyah;Paul M. Sutcliffe

  • Tetrahedral and cubic monopoles

    Conor J. Houghton;Paul M. Sutcliffe

  • Spinning skyrmions and the Skyrme parameters

    Richard A. Battye;Steffen Krusch;Paul M. Sutcliffe

  • The interaction of Skyrme-like lumps in (2+1) dimensions

    P M Sutcliffe

  • Q-ball Dynamics

    Richard A. Battye;Paul M. Sutcliffe

  • A Skyrme lattice with hexagonal symmetry

    Richard A Battye;Paul M Sutcliffe

  • Stability of knots in excitable media.

    Paul M. Sutcliffe;Arthur T. Winfree

Frequent Co-Authors

Richard A. Battye
Richard A. Battye University of Manchester
Michael Atiyah
Michael Atiyah University of Edinburgh
Gary W. Gibbons
Gary W. Gibbons University of Cambridge
Jonathan W. Steed
Jonathan W. Steed Durham University
Peter Fischer
Peter Fischer Lawrence Berkeley National Laboratory
Andrea Sorrentino
Andrea Sorrentino University of Salerno
David Evans
David Evans Yale University

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