ViewVC Help
View File | Revision Log | Show Annotations | View Changeset | Root Listing
root/group/trunk/tengDissertation/Conclusion.tex
(Generate patch)

Comparing trunk/tengDissertation/Conclusion.tex (file contents):
Revision 2685 by tim, Mon Apr 3 18:07:54 2006 UTC vs.
Revision 2877 by tim, Thu Jun 22 05:23:06 2006 UTC

# Line 1 | Line 1
1   \chapter{\label{chapt:conclusion}CONCLUSION}
2 +
3 + This dissertation has presented the work and research accomplished
4 + over the course of the past five years. Chapt.~\ref{chapt:RSA}
5 + illustrated the application of statistical mechanical principles to
6 + the solution of an experimental problem. Given a relatively simple
7 + model, could the differences in experimental coverage be accounted
8 + for? By utilizing Monte Carlo modeling methods, I wrote several
9 + simulations that provided a clear explanation for the majority of
10 + the experimental evidence. Namely, that overlapping, or
11 + interdigitating molecules were responsible for the high surface
12 + coverage of the ``umbrella'' silicon phthalocyanines, while the
13 + ``octopus'' molecules, which do not overlap, have a much lower
14 + coverage.
15 +
16 + Chapt.~\ref{chapt:oopse} presented the work necessary to the
17 + solution of more complex research problems. It became clear, after
18 + the work on the RSA simulations, that even simple simulations can
19 + take a great deal of programming. If I were to simulate the bilayer
20 + systems using a coarse-grained model, a sophisticated molecular
21 + modeling program was required. After examining the options available
22 + at the time, writing an advanced simulation program was the only
23 + realistic solution.
24 +
25 + Working with my lab-mates, I have developed our simulation program
26 + ({\sc oopse}) to the point where it is capable carrying out many
27 + unique simulations. It properly integrates rigid body dynamics. It
28 + has the capability to model dipoles rather than point charges only;
29 + and is therefore able to integrate larger systems for longer times
30 + than any other current modeling package. It can use the MPI
31 + interface to calculate the long range forces across multiple
32 + processors. And lastly, it is open source, so that other scientists
33 + may use the code and contribute back to the project and enhance the
34 + program.
35 +
36 + Lastly Chapt.~\ref{chapt:lipid} presented the research that became
37 + the main design goal of {\sc oopse}. The lipid model was under
38 + continual development while {\sc oopse} was being written. In fact
39 + many of the integration ensembles in {\sc oopse} were specifically
40 + written to continue development of the lipid model. The set of
41 + simulations presented in the chapter have shown that the model is
42 + capable of spontaneously forming bilayers. It also explored the
43 + properties of the bilayers over a range of temperatures. Further
44 + extensions to the model will likely include exploration of how head
45 + group dipole strength and varying chain configurations (one chain
46 + versus two chains, etc.) affect the structure and dynamics of the
47 + lipid bilayer. However, at this point there are many questions that
48 + can now be explored with this model such as how do small molecules
49 + include themselves, and diffuse through the bilayer? Or what are the
50 + characteristic events that lead to the formation of special lipid
51 + phases (i.e.~the ripple phase)? It is my hope that my contributions
52 + to this research will make it possible to answer these important
53 + questions and many others.

Diff Legend

Removed lines
+ Added lines
< Changed lines
> Changed lines