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The QAOA gets stuck starting from a good classical string

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arxiv 2207.05089 v2 pith:LJGREN4F submitted 2022-07-11 quant-ph

The QAOA gets stuck starting from a good classical string

classification quant-ph
keywords qaoaalgorithmstringapplyclassicalcostfunctiongood
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The Quantum Approximate Optimization Algorithm (QAOA) is designed to maximize a cost function over bit strings. While the initial state is traditionally a uniform superposition over all strings, it is natural to try expediting the QAOA: first use a classical algorithm to produce some good string, and then run the standard QAOA starting in the computational basis state associated with that string. Here we report numerical experiments that show this method of initializing the QAOA fails dramatically, exhibiting little to no improvement of the cost function. We provide multiple analytical arguments for this lack of improvement, each of which can be made rigorous under different regimes or assumptions, including at nearly linear depths. We emphasize that our negative results only apply to our simple incarnation of the warm-start QAOA and may not apply to other approaches in the literature. We hope that our theoretical analysis will inform future algorithm design.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Constrained Quantum Optimization via Iterative Warm-Start XY-Mixers

    quant-ph 2026-04 conditional novelty 6.5

    A warm-started XY-mixer aligned to a biased W-state, iterated via sample-based probability updates, raises optimal-solution sampling rates for one-hot constrained QAOA and finds optima on 144-qubit hardware with post-...

  2. Quantum Approximate Optimization via Noise-Directed Adaptive Warm-Starting

    quant-ph 2026-07 conditional novelty 6.0

    Bitflip-gauge warm-start QAOA that aligns the ansatz with amplitude-damping noise improves 100-qubit Ising approximation ratios over non-gauge iterative warm-start at no extra circuit cost.