Orbital Quantum Bit in Si Quantum Dots

  • Ahn, D. (Institute of Quantum Information Processing and Systems, University of Seoul) ;
  • Oh, J.H. (Institute of Quantum Information Processing and Systems, University of Seoul) ;
  • Hwnag, S.W. (Institute of Quantum Information Processing and Systems, University of Seoul)
  • Published : 2006.10.31

Abstract

In this paper, current status of experimental and theoretical work on quantum bits based on the semiconductor quantum dots in the University of Seoul will be presented. A new proposal utilizing the multi-valley quantum state transitions in a Si quantum dot as a possible candidate for a quantum bit with a long decoherence time will be also given. Qubits are the multi-valley symmetric and anti-symmetric orbitals. Evolution of these orbitals is controlled by an external electric field, which turns on and off the inter-valley interactions. Initialization is achieved by turning on the inter-valley Hamiltonian to let the system settle down to the symmetric orbital state. Estimates of the decoherence time is made for the longitudinal acoustic phonon process.

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