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This project explores how different kinds of quantum systems can produce different patterns of correlations in networks; i.e. when several parties perform experiments on shared resources. A famous result known as Bell’s theorem showed that quantum physics allows correlations that cannot be explained using classical models without communication between the parties. Recent research suggests that systems made of a kind of indistinguishable particles, called fermions, may allow even richer types of correlations than those described by standard quantum models. The aim of this project is to develop new theoretical tools to understand and clearly identify these differences. The expected outcome is a deeper understanding of the foundations of quantum physics and new methods for studying quantum networks (standard or fermionic), while strengthening collaboration between Perimeter Institute and Inria Saclay in the field of quantum sciences.
Elie Wolfe
INRIA - Saclay
Physics
Education
University of Waterloo
Globalink Research Award
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Mitacs is funded by the Government of Canada, the Government of Alberta, the Government of British Columbia, Research Manitoba, the Government of New Brunswick, the Government of Newfoundland and Labrador, the Government of Nova Scotia, the Government of Ontario, Innovation PEI, the Government of Quebec, the Government of Saskatchewan, and the Government of Yukon.