English

Quantum harmonic oscillator state synthesis by reservoir engineering

Quantum Physics 2015-01-19 v3

Abstract

The robust generation of quantum states in the presence of decoherence is a primary challenge for explorations of quantum mechanics at larger scales. Using the mechanical motion of a single trapped ion, we utilize reservoir engineering to generate squeezed, coherent and displaced-squeezed states as steady states in the presence of noise. We verify the created state by generating two-state correlated spin-motion Rabi oscillations resulting in high contrast measurements. For both cooling and measurement, we use spin-oscillator couplings that provide transitions between oscillator states in an engineered Fock state basis. Our approach should facilitate studies of entanglement, quantum computation, and open-system quantum simulations in a wide range of physical systems.

Keywords

Cite

@article{arxiv.1409.3032,
  title  = {Quantum harmonic oscillator state synthesis by reservoir engineering},
  author = {D. Kienzler and H. -Y. Lo and B. Keitch and L. de Clercq and F. Leupold and F. Lindenfelser and M. Marinelli and V. Negnevitsky and J. P. Home},
  journal= {arXiv preprint arXiv:1409.3032},
  year   = {2015}
}

Comments

17 pages, 4 figures, typos corrected

R2 v1 2026-06-22T05:53:18.534Z