English

Decoherence of a single spin coupled to an interacting spin bath

Mesoscale and Nanoscale Physics 2016-01-20 v2 Quantum Physics

Abstract

Decoherence of a central spin coupled to an interacting spin bath via inhomogeneous Heisenberg coupling is studied by two different approaches, namely an exact equations of motion (EOMs) method and a Chebyshev expansion technique (CET). By assuming a wheel topology of the bath spins with uniform nearest-neighbor XXXX-type intrabath coupling, we examine the central spin dynamics with the bath prepared in two different types of bath initial conditions. For fully polarized baths in strong magnetic fields, the polarization dynamics of the central spin exhibits a collapse-revival behavior in the intermediate-time regime. Under an antiferromagnetic bath initial condition, the two methods give excellently consistent central spin decoherence dynamics for finite-size baths of N14N\leq14 bath spins. The decoherence factor is found to drop off abruptly on a short time scale and approach a finite plateau value which depends on the intrabath coupling strength non-monotonically. In the ultrastrong intrabath coupling regime, the plateau values show an oscillatory behavior depending on whether N/2N/2 is even or odd. The observed results are interpreted qualitatively within the framework of the EOM and perturbation analysis. The effects of anisotropic spin-bath coupling and inhomogeneous intrabath bath couplings are briefly discussed. Possible experimental realization of the model in a modified quantum corral setup is suggested.

Keywords

Cite

@article{arxiv.1507.04514,
  title  = {Decoherence of a single spin coupled to an interacting spin bath},
  author = {Ning Wu and Nina Fröhling and Xi Xing and Johannes Hackmann and Arun Nanduri and Frithjof B. Anders and Herschel Rabitz},
  journal= {arXiv preprint arXiv:1507.04514},
  year   = {2016}
}

Comments

11 pages, 7 figures, to appear in Phys. Rev. B

R2 v1 2026-06-22T10:12:58.531Z