DIrectly Determined Pair-Natural Orbitals and their implications on Quantum Algorithms for Chemistry
ORAL
Abstract
I will discuss recent results that apply directly determined pair-natural orbitals to quantum chemistry algorithms on quantum computers (arxiv:2008.02819). The approach allows the automated construction of system-adapted orbitals through a classical surrogate model, leading to compact Hamiltonians with significantly reduced qubit requirements. Furthermore, the physical properties of the surrogate model can be exploited in the construction of low-depth quantum circuits. I will give a high level overwiev over the involved physical principles and numerical techniques, combined with more detailed illustrations on explicit examples.
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Presenters
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Jakob S. Kottmann
Chemistry/Computer Science, University of Toronto, Univ of Toronto
Authors
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Jakob S. Kottmann
Chemistry/Computer Science, University of Toronto, Univ of Toronto
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Philipp Schleich
Computer Science/Mathematics, RWTH Aachen
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Teresa Tamayo-Mendoza
Chemistry, Harvard University
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Alan Aspuru-Guzik
Univ of Toronto, Chemistry/Computer Science, University of Toronto, Department of Computer Science and Chemistry, University of Toronto