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root/group/trunk/matt_papers/RSA/intro_RSA.tex
Revision: 56
Committed: Tue Jul 30 18:47:17 2002 UTC (21 years, 11 months ago) by mmeineke
Content type: application/x-tex
Original Path: branches/mmeineke/matt_papers/RSA/intro_RSA.tex
File size: 1652 byte(s)
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This is the RSA paper published in 2001

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# User Rev Content
1 mmeineke 56 \subsection{RSA}
2     \label{sec:RSA_intro}
3    
4     Random sequential adsorption, or RSA, describes the body of simulations where
5     a collection of sites or a continuum are sequetially and irreversibly
6     filled.\cite{evans1993} The RSA model has been used to simulate many types
7     of situations, from disociative chemisorption of $H_{2}O$ on an Fe (100)
8     surface,\cite{dwyer1977} to the arrangment of protiens on solid
9     surfaces.\cite{Macrichte1978}\cite{feder1980}\cite{ramsden1993} RSA can
10     provide a very powerful, yet simple model to simulate certain conditions.
11    
12     One of the key components of RSA is the concept of irreversible filling of
13     the simulation space. Once the simulated entity lands on the surface, it is
14     considered to be immobile, nor will it desorb from the surface. There are
15     some models that allow for a certain window of movememnt when the entity
16     first adsorbs.\cite{dobson1987}\cite{egelhoff1989}\cite{evans1989} However,
17     at some point the entity is considered a fixed feature of the surface.
18    
19     A distinct phenomenon that arrises out of RSA simulations, is the jamming
20     limit coverage, $\theta_{J}$. This coverage limit is closely dependent on the
21     shape of the entity, and is approached asymptotically as it becomes less
22     and less likely for an entity to find a place to land on the increasingly
23     crowded simulation space. $\theta_{J}$ for a 2D simulation of circles on
24     a plane, is 0.547,\cite{evans1993} and has been shown to decrease in systems
25     of increasingly anisotropic particles.\cite{viot1992} Although it is
26     interesting to note that the same paper also mentioned a slight increase in
27     coverage for entities only slightly removed from isotropy.