English

Cavity cooling of an ensemble spin system

Quantum Physics 2014-02-25 v2

Abstract

We describe how sideband cooling techniques may be applied to large spin ensembles in magnetic resonance. Using the Tavis-Cummings model in the presence of a Rabi drive, we solve a Markovian master equation describing the joint spin-cavity dynamics to derive cooling rates as a function of ensemble size. Our calculations indicate that the coupled angular momentum subspaces of a spin ensemble containing roughly 101110^{11} electron spins may be polarized in a time many orders of magnitude shorter than the typical thermal relaxation time. The described techniques should permit efficient removal of entropy for spin-based quantum information processors and fast polarization of spin samples. The proposed application of a standard technique in quantum optics to magnetic resonance also serves to reinforce the connection between the two fields, which has recently begun to be explored in further detail due to the development of hybrid designs for manufacturing noise-resilient quantum devices.

Keywords

Cite

@article{arxiv.1305.1029,
  title  = {Cavity cooling of an ensemble spin system},
  author = {Christopher J. Wood and Troy W. Borneman and David G. Cory},
  journal= {arXiv preprint arXiv:1305.1029},
  year   = {2014}
}

Comments

14 pages + 5 figures

R2 v1 2026-06-22T00:11:44.220Z