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Globally Optimizing QAOA Circuit Depth for Constrained Optimization Problems
oleh: Rebekah Herrman, Lorna Treffert, James Ostrowski, Phillip C. Lotshaw, Travis S. Humble, George Siopsis
| Format: | Article |
|---|---|
| Diterbitkan: | MDPI AG 2021-10-01 |
Deskripsi
We develop a global variable substitution method that reduces <i>n</i>-variable monomials in combinatorial optimization problems to equivalent instances with monomials in fewer variables. We apply this technique to 3-SAT and analyze the optimal quantum unitary circuit depth needed to solve the reduced problem using the quantum approximate optimization algorithm. For benchmark 3-SAT problems, we find that the upper bound of the unitary circuit depth is smaller when the problem is formulated as a product and uses the substitution method to decompose gates than when the problem is written in the linear formulation, which requires no decomposition.