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

Julia Yeomans OBE FRS

Professor of Physics

Research theme

  • Biological physics

Sub department

  • Rudolf Peierls Centre for Theoretical Physics

Research groups

  • Condensed Matter Theory
Julia.Yeomans@physics.ox.ac.uk
Telephone: 01865 (2)76884 (college),01865 (2)73992
Rudolf Peierls Centre for Theoretical Physics, room 70.10
www-thphys.physics.ox.ac.uk/people/JuliaYeomans
  • About
  • Publications

ON THE HARRIS CRITERION FOR HIERARCHICAL LATTICES

JOURNAL OF PHYSICS A-MATHEMATICAL AND GENERAL 18:1 (1985) L53-L55

Authors:

B DERRIDA, H DICKINSON, J YEOMANS
More details from the publisher

THE AXIAL ISING-MODEL WITH 3RD NEIGHBOR INTERACTIONS - LOW-TEMPERATURE EXPANSION

PHYSICA A 134:1 (1985) 84-122

Authors:

M BARRETO, J YEOMANS
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THE ENERGETICS OF POLYTYPIC STRUCTURES - FURTHER APPLICATIONS OF THE ANNNI MODEL

ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE 41:OCT (1985) 310-319

Authors:

RJ ANGEL, GD PRICE, J YEOMANS
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THE ENERGETICS OF POLYTYPIC STRUCTURES - A COMPUTER-SIMULATION OF MAGNESIUM-SILICATE SPINELLOIDS

ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL SCIENCE 41:AUG (1985) 231-239

Authors:

GD PRICE, SC PARKER, J YEOMANS
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A low-temperature mean-field theory of the three-dimensional, p-state chiral clock model

Journal of Physics C Solid State Physics 17:20 (1984) 3601-3614

Abstract:

The low-temperature phase diagram of the p-state chiral clock model is studied by mapping the model on to a one-dimensional array of interacting domain walls within a mean-field approximation. Infinite sequences of commensurate phases are found for all values of p. The domain wall picture gives some insight into the reasons for the stability of given phase sequences. The results agree well with low-temperature series calculations.
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