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Abstract

Exact first-principles calculations of molecular properties are currently intractable because their computational cost grows exponentially with both the number of atoms and basis set size. A solution is to move to a radically different model of computing by building a quantum computer, which is a device that uses quantum systems themselves to store and process data. Here we report the application of the latest photonic quantum computer technology to calculate properties of the smallest molecular system: the hydrogen molecule in a minimal basis. We calculate the complete energy spectrum to 20 bits of precision and discuss how the technique can be expanded to solve large-scale chemical problems that lie beyond the reach of modern supercomputers. These results represent an early practical step toward a powerful tool with a broad range of quantum-chemical applications.

Details

Title
Towards quantum chemistry on a quantum computer
Author
Lanyon, B P; Whitfield, J D; Gillett, G G; Goggin, M E; Almeida, M P; Kassal, I; Biamonte, J D; Mohseni, M; Powell, B J; Barbieri, M; Aspuru-guzik, A; White, A G
Pages
106-11
Publication year
2010
Publication date
Feb 2010
Publisher
Nature Publishing Group
ISSN
17554330
e-ISSN
17554349
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
867893204
Copyright
Copyright Nature Publishing Group Feb 2010