CCP6 Renewal: Developing Quantum Dynamics for Large Systems

Lead Research Organisation: University of Cambridge
Department Name: Chemistry

Abstract

Computer simulations have become essential tools to help understand, and even to predict, the results of chemistry experiments. Many fundamental processes require the quantum mechanical nature of molecules to be taken into account for a realistic simulation. At present, however, we are unable to treat correctly the dynamics of more than a few atoms using quantum mechanics. As a result, one has to simulate either a reduced model system exactly, or the full system using approximate methods such as classical molecular dynamics. A useful route to overcome the limitations is to treat part of a system using quantum mechanics, and part of the system using more approximate methods. The proposed research aims to develop a promising new mixed dynamics algorithm in which the all important, but theoretically difficult, interaction between the different parts of the system is treated rigorously.As a test of the method we propose to simulate experiments that scatter water molecules off the surface of a protein. The scattering process will be described using full quantum mechanics, while the protein environment will be described dynamically and explicitely, but more approximately. Results should give insights into the nature of solvation at the molecular level.

Publications

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Description This grant mainly provided infrastructure funding which allowed us to hold several international workshops, and also fund travel of collaborators.
Exploitation Route The workshops will have given the participants new ideas for their research.
Sectors Chemicals

 
Description Ideas exchanged at workshops have been used in further research.