Kern and Frenkel patchy model: Difference between revisions

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then the patch cannot be involved in more than one bond. Enforcing this condition makes it possible to compare the simulations results with Wertheim theory <ref name="bianchi"/><ref name="rovigatti"/>
then the patch cannot be involved in more than one bond. Enforcing this condition makes it possible to compare the simulations results with [[Wertheim's first order thermodynamic perturbation theory (TPT1)| Wertheim theory]] <ref name="bianchi"/><ref name="rovigatti"/>


==References==
==References==

Revision as of 16:02, 28 December 2012

The Kern and Frenkel [1] patchy model is an amalgamation of the hard sphere model with attractive square well patches (HSSW). The potential has an angular aspect, given by (Eq. 1)


Φij(rij;Ω~i,Ω~j)=ΦijHSSW(rij)⋅f(Ω~i,Ω~j)


where the radial component is given by the square well model (Eq. 2)

ΦijHSSW(rij)={∞;r<σ−ϵ;σ≤r<λσ0;r≥λσ

and the orientational component is given by (Eq. 3)

fij(r^ij;Ω~i,Ω~j)={1if{(e^α⋅r^ij≤cosδ)forsomepatchαoniand(e^β⋅r^ji≤cosδ)forsomepatchβonj0otherwise

where δ is the solid angle of a patch (α,β,...) whose axis is e^ (see Fig. 1 of Ref. 1), forming a conical segment.

Two patches

The "two-patch" Kern and Frenkel model has been extensively studied by Sciortino and co-workers [2][3][4].

Four patches

Main article: Anisotropic particles with tetrahedral symmetry

Single-bond-per-patch-condition

If the two parameters δ and λ fullfil the condition

sinδ≤12(1+λσ)

then the patch cannot be involved in more than one bond. Enforcing this condition makes it possible to compare the simulations results with Wertheim theory [2][4]

References

Related reading