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R C Ball, Physics Theory Group and Centre for Complexity Science University of Warwick assoc. member Centre for Scientific Computing Incorporating Hydrodynamics.

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Presentation on theme: "R C Ball, Physics Theory Group and Centre for Complexity Science University of Warwick assoc. member Centre for Scientific Computing Incorporating Hydrodynamics."— Presentation transcript:

1 R C Ball, Physics Theory Group and Centre for Complexity Science University of Warwick assoc. member Centre for Scientific Computing Incorporating Hydrodynamics into Monte Carlo Simulations

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3 Outline Monte Carlo simulation and Diffusion Challenge of long range hydrodynamic coupling – important in many soft matter systems. Fourier method: order N^2 per unit time –application to polymer dynamics Wavelet adaptation approaching order N

4 MC of particle systems

5 More practical interpretation

6 Particles in a fluid q q p p a  Some studies just use Cholesky …  Banchio & Brady: long range part slow to change – update less often (JCP 2003)  Present approach: (i) Fourier (ii) Wavelets Micro Hydrodynamics Macromolecules Bacteria Colloids

7 Fourier Approach

8 Limitation to timestep

9 Polymer chain N=1000 monomers Using ‘phantom’ chains so that eq’m initial configurations available

10 Polymer diffusion monomer motion Centre of Mass motion Monomers rel to CoM N=100 monomer chains CoM

11 N=400 N=1000

12 Hydrodynamic scaling N=1000 monomers monomers Centre of Mass abs rel CoM

13 Wavelet version (untested)

14 Move limits and costs

15 Limitations and Prospects Imposing relative motion and strain: applicable to SOFT matter only. Not capturing close-to-contact “lubrication friction” Potential to beat conventional MC at equilibration –hydrodynamics accelerates large scale relaxation E.g. polymer D ~ 1/N → 1/R –motion more concerted Opens up hydrodynamic coupling Background flow (e.g. simple shear) can be added Walls easy to add by Fourier, challenging by Wavelets

16 Acknowledgements Line of enquiry prompted by collaboration on translocation with D Panja and G Berkema: hydrodynamics crucial. CSC CoW ITS desktop CSC seminar


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