English

Singly-excited resonant open quantum system Tavis-Cummings model with quantum circuit mapping

Quantum Physics 2023-11-16 v2 Computational Physics Optics

Abstract

Tavis-Cummings (TC) cavity quantum electrodynamical effects, describing the interaction of NN atoms with an optical resonator, are at the core of atomic, optical and solid state physics. The full numerical simulation of TC dynamics scales exponentially with the number of atoms. By restricting the open quantum system to a single excitation, typical of experimental realizations in quantum optics, we analytically solve the TC model with an arbitrary number of atoms with linear complexity. This solution allows us to devise the Quantum Mapping Algorithm of Resonator Interaction with NN Atoms (Q-MARINA), an intuitive TC mapping to a quantum circuit with linear space and time scaling, whose N+1N+1 qubits represent atoms and a lossy cavity, while the dynamics is encoded through 2N2N entangling gates. Finally, we benchmark the robustness of the algorithm on a quantum simulator and superconducting quantum processors against the quantum master equation solution on a classical computer.

Keywords

Cite

@article{arxiv.2208.12029,
  title  = {Singly-excited resonant open quantum system Tavis-Cummings model with quantum circuit mapping},
  author = {Marina Krstic Marinkovic and Marina Radulaski},
  journal= {arXiv preprint arXiv:2208.12029},
  year   = {2023}
}

Comments

15 pages, 4 figures

R2 v1 2026-06-25T01:58:19.013Z