English

Decohered toric code under quantum damping noise and its mapping to a classical spin model

Quantum Physics 2026-07-01 v1

Abstract

We investigate properties of toric codes under realistic damping error channels, which include squeezing, thermal and non-Markovian effects. First, we map the decohered toric code under the generalized amplitude-damping (GAD) and the squeezed generalized amplitude-damping (SGAD) channels to the statistical-mechanical models using the double Hilbert-space formalism. Second, we map the action of the GAD and SGAD channels on the toric code to stochastic Pauli-type errors via Pauli twirling, yielding asymmetric depolarizing channels, and obtain the logical failure probabilities as a function of temperature and squeezing. In both cases, we relate the channel parameters of the GAD and SGAD channels to the spin-coupling constants of the statistical-mechanical model.

Cite

@article{arxiv.2607.01364,
  title  = {Decohered toric code under quantum damping noise and its mapping to a classical spin model},
  author = {Nihar Ranjan Dash and Sanjoy Dutta and R. Srikanth and Subhashish Banerjee},
  journal= {arXiv preprint arXiv:2607.01364},
  year   = {2026}
}

Comments

11 pages, 6 figures