[Nonlinear Physics Centre]
  Phys. Rev. A 72, 062321-5 (Dec 2005)
Home page
+People
+Research
+Study
-Papers
Contact us
Recent papers
Opt. Express 17, 21732-21737 (12 Nov 2009)
Opt. Express 17, 20063-20068 (20 Oct 2009)
Opt. Express 17, 18196-18208 (24 Sep 2009)
Opt. Lett. 34, 2751-2753 (15 Sep 2009)
Appl. Phys. Lett. 95, 084105-3 (27 Aug 2009)
more...
Student scholarships available
Do your Honours or PhD with the Centre for Ultrahigh- bandwidth Devices for Optical Systems
Quantum computation with diatomic bits in optical lattices
C. Lee and E. A. Ostrovskaya,
Phys. Rev. A 72, 062321-5 (2005).
[Full-text PDF (137 Kb)] [Online]
Abstract: We propose a scheme for scalable and universal quantum computation using diatomic bits with conditional dipole-dipole interaction, trapped within an optical lattice. The qubit states are encoded by the scattering state and the bound heteronuclear molecular state of two ultracold atoms per site. The conditional dipole-dipole interaction appears between neighboring bits when they both occupy the molecular state. The realization of a universal set of quantum logic gates, which is composed of single-bit operations and a two-bit controlled-NOT gate, is presented. The readout method is also discussed.
Keywords: bose-einstein condensate; neutral atoms; logic gates; computer; entanglement; information; state

Copyright © by the respective publisher. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the publisher.

  Copyright © 2001-2009 Nonlinear Physics Centre All rights reserved.