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Quadratization in discrete optimization and quantum mechanics

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arxiv 1901.04405 v2 pith:YK7GT7ZU submitted 2019-01-14 quant-ph cs.CVcs.DMmath.OCphysics.chem-ph

classification quant-phcs.CVcs.DMmath.OCphysics.chem-ph
keywords quantumbookoptimizationproblemsnumberformquadratizationadiabatic
verification ladder T0 review T1 audit T2 compute T3 formal
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A book about turning high-degree optimization problems into quadratic optimization problems that maintain the same global minimum (ground state). This book explores quadratizations for pseudo-Boolean optimization, perturbative gadgets used in QMA completeness theorems, and also non-perturbative k-local to 2-local transformations used for quantum mechanics, quantum annealing and universal adiabatic quantum computing. The book contains ~70 different Hamiltonian transformations, each of them on a separate page, where the cost (in number of auxiliary binary variables or auxiliary qubits, or number of sub-modular terms, or in graph connectivity, etc.), pros, cons, examples, and references are given. One can therefore look up a quadratization appropriate for the specific term(s) that need to be quadratized, much like using an integral table to look up the integral that needs to be done. This book is therefore useful for writing compilers to transform general optimization problems, into a form that quantum annealing or universal adiabatic quantum computing hardware requires; or for transforming quantum chemistry problems written in the Jordan-Wigner or Bravyi-Kitaev form, into a form where all multi-qubit interactions become 2-qubit pairwise interactions, without changing the desired ground state. Applications cited include computer vision problems (e.g. image de-noising, un-blurring, etc.), number theory (e.g. integer factoring), graph theory (e.g. Ramsey number determination), and quantum chemistry. The book is open source, and anyone can make modifications here: https://github.com/HPQC-LABS/Book_About_Quadratization.

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Cited by 4 Pith papers

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

  1. Adaptive Encoding Strategy for Quantum Annealing in Mixed-Variable Engineering Optimization

    cs.CE 2026-03 accept novelty 6.5 of 10

    Adaptive encoding of continuous variables for quantum annealing improves continuous-field accuracy by orders of magnitude under a fixed binary budget on a composite-rod design problem.

  2. Applying Grover-mixer quantum alternating operator ansatz algorithm to higher-order unconstrained binary optimization problems

    quant-ph 2025-12 reject novelty 6.0 of 10

    Using a Grover mixer instead of a transverse-field mixer makes QAOA's ground-state success probability keep improving with depth on high-order binary optimization instances, and a Gaussian/EVT parameter heuristic come...

  3. A QUBO-Based Optimization Framework for ATM Cash Replenishment Scheduling

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  4. Systematic and Efficient Construction of Quadratic Unconstrained Binary Optimization Forms for High-order and Dense Interactions

    quant-ph 2025-06 conditional novelty 5.0 of 10

    A systematic QUBO construction via ReLU expansion and binary sign-bit encoding for Gaussian mixture, RBF kernel, and ReLU-network surrogates, enabling quantum-annealing-based black-box optimization.

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