Experimental exploration over a quantum control landscape through nuclear magnetic resonance

Qiuyang Sun, István Pelczer, Gregory Riviello, Re-Bing Wu, and Herschel Rabitz
Phys. Rev. A 89, 033413 – Published 12 March 2014

Abstract

The growing successes in performing quantum control experiments motivated the development of control landscape analysis as a basis to explain these findings. When a quantum system is controlled by an electromagnetic field, the observable as a functional of the control field forms a landscape. Theoretical analyses have revealed many properties of control landscapes, especially regarding their slopes, curvatures, and topologies. A full experimental assessment of the landscape predictions is important for future consideration of controlling quantum phenomena. Nuclear magnetic resonance (NMR) is exploited here as an ideal laboratory setting for quantitative testing of the landscape principles. The experiments are performed on a simple two-level proton system in a H2O-D2O sample. We report a variety of NMR experiments roving over the control landscape based on estimation of the gradient and Hessian, including ascent or descent of the landscape, level set exploration, and an assessment of the theoretical predictions on the structure of the Hessian. The experimental results are fully consistent with the theoretical predictions. The procedures employed in this study provide the basis for future multispin control landscape exploration where additional features are predicted to exist.

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  • Received 26 December 2013

DOI:https://doi.org/10.1103/PhysRevA.89.033413

©2014 American Physical Society

Authors & Affiliations

Qiuyang Sun1, István Pelczer1, Gregory Riviello1, Re-Bing Wu2, and Herschel Rabitz1

  • 1Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA
  • 2Department of Automation, Tsinghua University and Center for Quantum Information Science and Technology, TNList, Beijing, 100084, China

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Issue

Vol. 89, Iss. 3 — March 2014

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