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NMR investigation of contextuality in a quantum harmonic oscillator via pseudospin mapping

Quantum Physics 2016-03-23 v3

Abstract

Physical potentials are routinely approximated to harmonic potentials so as to analytically solve the system dynamics. Often it is important to know when a quantum harmonic oscillator (QHO) behaves quantum mechanically and when classically. Recently Su et. al. [Phys. Rev. A {\bf 85}, 052126 (2012)] have theoretically shown that QHO exhibits quantum contextuality (QC) for a certain set of pseudospin observables. In this work, we encode the four eigenstates of a QHO onto four Zeeman product states of a pair of spin-1/2 nuclei. Using the techniques of NMR quantum information processing, we then demonstrate the violation of a state-dependent inequality arising from the noncontextual hidden variable model, under specific experimental arrangements. We also experimentally demonstrate the violation of a state-independent inequality by thermal equilibrium states of nuclear spins, thereby assessing their quantumness.

Keywords

Cite

@article{arxiv.1503.05883,
  title  = {NMR investigation of contextuality in a quantum harmonic oscillator via pseudospin mapping},
  author = {Hemant Katiyar and C. S. Sudheer Kumar and T. S. Mahesh},
  journal= {arXiv preprint arXiv:1503.05883},
  year   = {2016}
}

Comments

5 Pages, 3 Figures, context dependency illustrated, error below eq. 5 corrected