English

Single-shot GHZ characterization with connectivity-aware fanout constructions

Quantum Physics 2026-02-13 v1

Abstract

We propose a practical recipe to transform any depth-LL block of CNOTs that prepares nn-qubit GHZ states into an nn-qubit fanout gate (multitarget-CNOT) of depth 2L12L-1, without the need for ancilla qubits. Considering known logarithmic-depth circuits to prepare GHZ-states, this allows us to construct an nn-qubit fanout gate with depth 2log2(n)12\log_2(n)-1, reproducing previous ancillaless constructions. We employ our recipe to construct nn-qubit fanout gates under heavy-hex connectivity restrictions, obtaining a depth of O(n1/2)O(n^{1/2}), again reproducing previous complexity theory constructions. Using this recipe on the \textit{ibm\_fez} architecture yields a 156156-qubit fanout construction with depth 3333. Additionally, we show how to employ these nn-qubit fanout constructions to measure complete sets of commuting observables from the nn-body Pauli group with the same depth, allowing for efficient single-shot characterization of any GHZ-like state in a given known basis, e.g. fully characterizing a single copy of a 156156-qubit GHZ state using circuit depth 3333 in ibm_fez\textit{ibm\_fez} (its preparation requires an additional depth of 1717).

Cite

@article{arxiv.2602.11839,
  title  = {Single-shot GHZ characterization with connectivity-aware fanout constructions},
  author = {Giancarlo Gatti},
  journal= {arXiv preprint arXiv:2602.11839},
  year   = {2026}
}

Comments

7 pages, 3 figures

R2 v1 2026-07-01T10:33:29.575Z