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Synthesizing efficient circuits for Hamiltonian simulation

delete2023-04-03
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OA
AI
P
Priyanka Mukhopadhyay *
N
Nathan Wiebe
H
Hong Tao Zhang
DOI:10.1038/s41534-023-00697-6delete
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Abstract

Abstract

En 中文
We provide an approach for compiling quantum simulation circuits that appear in Trotter, qDRIFT and multi-product formulas to Clifford and non-Clifford operations that can reduce the number of non-Clifford operations. The total number of gates, especially CNOT, reduce in many cases. We show that it is possible to implement an exponentiated sum of commuting Paulis with at most m (controlled)-rotation gates, where m is the number of distinct non-zero eigenvalues (ignoring sign). Thus we can collect mutually commuting Hamiltonian terms into groups satisfying one of several symmetries identified in this work. This allows an inexpensive simulation of the entire group of terms. We further show that the cost can in some cases be reduced by partially allocating Hamiltonian terms to several groups and provide a polynomial time classical algorithm that can greedily allocate the terms to appropriate groupings.
Keywords:
QUANTUM ALGORITHMS
CHEMISTRY

Journal

npj Quantum Information cover
npj Quantum Information
IF:
8.3
Papers:
1.4K
Citations:
8.1K

Organization

P
Pacific Northwest National Laboratory
Scholars:
9.0K
Papers: 6.3K
Citations: 14
U
University of Waterloo
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Citations: 3.3W
U
university of toronto
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14.7W
Papers: 12.0W
Citations: 165
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