English

Exact quantum dynamics of XXZ central spin problems

Quantum Physics 2019-05-29 v4 Other Condensed Matter

Abstract

We obtain analytically close forms of benchmark quantum dynamics of the collapse and revival (CR), reduced density matrix, Von Neumann entropy, and fidelity for the XXZ central spin problem. These quantities characterize the quantum decoherence and entanglement of the system with few to many bath spins, and for a short to infinitely long time evolution. For the homogeneous central spin problem, the effective magnetic field BB, coupling constant AA and longitudinal interaction Δ\Delta significantly influence the time scales of the quantum dynamics of the central spin and the bath, providing a tunable resource for quantum metrology. Under the resonance condition B=Δ=AB=\Delta=A, the location of the mm-th revival peak in time reaches a simple relation trπNAmt_{r} \simeq\frac{\pi N}{A} m for a large NN. For Δ=0\Delta =0, NN\to \infty and a small polarization in the initial spin coherent state, our analytical result for the CR recovers the known expression found in the Jaynes-Cummings model, thus building up an exact dynamical connection between the central spin problems and the light-matter interacting systems in quantum nonlinear optics. In addition, the CR dynamics is robust to a moderate inhomogeneity of the coupling amplitudes, while disappearing at strong inhomogeneity.

Keywords

Cite

@article{arxiv.1810.03012,
  title  = {Exact quantum dynamics of XXZ central spin problems},
  author = {Wen-Bin He and Stefano Chesi and Hai-Qing Lin and Xi-Wen Guan},
  journal= {arXiv preprint arXiv:1810.03012},
  year   = {2019}
}

Comments

added new result on inhomogeneous central spin problem and added new references and supplementary material, 6 pages + 15 pages; 4 figures + 14 figures

R2 v1 2026-06-23T04:30:39.126Z