English

Entropy Cones and Entanglement Evolution for Dicke States

Quantum Physics 2023-11-27 v2 High Energy Physics - Theory Group Theory

Abstract

The NN-qubit Dicke states DkN|D^N_k\rangle, of Hamming-weight kk, are a class of entangled states which play an important role in quantum algorithm optimization. We present a general calculation of entanglement entropy in Dicke states, which we use to describe the DkN|D^N_k\rangle entropy cone. We demonstrate that all DkN|D^N_k\rangle entropy vectors emerge symmetrized, and use this to define a min-cut protocol on star graphs which realizes DkN|D^N_k\rangle entropy vectors. We identify the stabilizer group for all DkN|D^N_k\rangle, under the action of the NN-qubit Pauli group and two-qubit Clifford group, which we use to construct DkN|D^N_k\rangle reachability graphs. We use these reachability graphs to analyze and bound the evolution of DkN|D^N_k\rangle entropy vectors in Clifford circuits.

Keywords

Cite

@article{arxiv.2306.13146,
  title  = {Entropy Cones and Entanglement Evolution for Dicke States},
  author = {William Munizzi and Howard J. Schnitzer},
  journal= {arXiv preprint arXiv:2306.13146},
  year   = {2023}
}

Comments

32 pages, 14 figures, 1 Mathematica package

R2 v1 2026-06-28T11:12:18.348Z