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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

Confinement of knotted polymers in a slit

MOLECULAR PHYSICS 109:7-10 (2011) PII 936987418

Authors:

R Matthews, AA Louis, JM Yeomans
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Partial-post laplace barriers for virtual confinement, stable displacement, and >5 cm s-1 electrowetting transport

LAB ON A CHIP 11:24 (2011) 4221-4227

Authors:

E Kreit, BM Mognetti, JM Yeomans, J Heikenfeld
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Modeling receding contact lines on superhydrophobic surfaces.

Langmuir 26:23 (2010) 18162-18168

Authors:

BM Mognetti, JM Yeomans

Abstract:

We use mesoscale simulations to study the depinning of a receding contact line on a superhydrophobic surface patterned by a regular array of posts. For the simulations to be feasible, we introduce a novel geometry where a column of liquid dewets a capillary bounded by a superhydrophobic plane that faces a smooth hydrophilic wall of variable contact angle. We present results for the dependence of the depinning angle on the shape and spacing of the posts and discuss the form of the meniscus at depinning. We find, in agreement with ref 17 , that the local post concentration is a primary factor in controlling the depinning angle and show that the numerical results agree well with recent experiments. We also present two examples of metastable pinned configurations where the posts are partially wet.
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Hydrodynamic Interactions at Low Reynolds Number

Experimental Mechanics 50:9 (2010) 1283-1292

Authors:

GP Alexander, JM Yeomans

Abstract:

We consider the hydrodynamic interactions of low Reynolds number microswimmers, presenting a review of recent work based upon models of linked sphere swimmers. Particular attention is paid to those aspects that are generic, applicable to all microswimmers and not only to the simple models considered. The importance of the relative phase in swimmer-swimmer interactions is emphasised, as is the role of simple symmetry arguments in both understanding and constraining the hydrodynamic properties of microswimmers. © 2010 Society for Experimental Mechanics.
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Confinement of knotted polymers in a slit

(2010)

Authors:

R Matthews, AA Louis, JM Yeomans
More details from the publisher

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