An exact branch-and-bound solver for generalized qubit mapping shows that the standard layering constraint raises optimal SWAP counts and circuit depth, most strongly on sparsely connected hardware graphs.
Characterizing randomness in parameterized quantum circuits through express- ibility and average entanglement
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An Exact Branch and Bound Algorithm for the generalized Qubit Mapping Problem
An exact branch-and-bound solver for generalized qubit mapping shows that the standard layering constraint raises optimal SWAP counts and circuit depth, most strongly on sparsely connected hardware graphs.