Quick Navigation

Topics

Quantum Simulation Quantum Chemistry

Mapping of fermionic lattice models for Ising solvers.

PubMed
Authors: Nagpal L, Kumar A, Hassan SR

Year

2026

Paper ID

52026

Status

Peer-reviewed

Abstract Read

~2 min

Abstract Words

214

Citations

N/A

Abstract

We present an end-to-end, symmetry-aware pipeline that converts interacting fermionic and quantum-spin models into annealer-ready QUBOs while preserving low-energy physics. The workflow combines Bravyi-Kitaev encoding, exact [Formula: see text] symmetry tapering, Xia-Bian-Kais (XBK) diagonalization to a Z-only form, and [Formula: see text] local quadratization, with ground energies recovered via a Dinkelbach fixed-point over the resulting Ising objective. We validate the approach across a complexity ladder: (i) a frustrated 2D Ising model run on a D-Wave Advantage QPU reproduces the known ferromagnet-stripe transition; (ii) finite-temperature checks on 1D Ising recover standard finite-size trends; (iii) a genuinely quantum spin target (XXZ) matches exact diagonalization (ED) on small chains; and (iv) interacting fermions (t-V) in 1D (rings [Formula: see text]) show ED-level energies and the expected kink near [Formula: see text], with a 2D [Formula: see text] cluster tracking ED slopes up to a uniform offset. A replication-factor study quantifies the accuracy-overhead trade-off, with [Formula: see text]-of-magnitude error reduction by and diminishing returns beyond [Formula: see text] Except for the classical Ising benchmark and Molecular benchmarks, experiments use D-Wave's public DIMOD and Neal simulators; a molecular benzene case in the appendix illustrates portability beyond lattices. The results establish a practical pathway for mapping quantum matter to current annealers, with clear knobs for fidelity, resources, and embedding.

Why This Paper Matters

  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
  • It adds a 2026 reference point for readers tracking recent quantum research.
  • We present an end-to-end, symmetry-aware pipeline that converts interacting fermionic and quantum-spin models into annealer-ready QUBOs while preserving low-energy physics.

Paper Tools

Become a member to use research tools

Sign in to open papers, visit source links, share, cite, compare, copy DOI links, request category corrections, and build your reading list.

Publisher Share Cite This Paper Copy URL Compare Copy DOI Add to Reading List Category Correction Request

References & Citation Signals

Local Citation Graph (Related-Paper Links)

Current Paper #52026 #69535 Adiabatically-induced Kawaguchi... #69599 Tensor network compression usin... #69596 Comprehensive pKa Data Augmenta... #69594 A Collective-Spin Derivation of...

External citation index: OpenAlex citation signal

Community Reactions

Quick sentiment from readers on this paper.

Score: 0
Likes: 0 Dislikes: 0

Sign in to react to this paper.

Discussion & Reviews (Moderated)

Average Rating: 0.0 / 5 (0 ratings)

No written reviews yet.