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Professor Artur Ekert FRS

Professor

Research theme

  • Quantum information and computation

Sub department

  • Atomic and Laser Physics
artur.ekert@physics.ox.ac.uk
Clarendon Laboratory
  • About
  • Publications

Direct detection of quantum entanglement

(2001)

Authors:

Pawel Horodecki, Artur Ekert

Reply to `Singularities of the mixed state phase'

ArXiv quant-ph/0109139 (2001)

Authors:

J Anandan, E Sj枚qvist, AK Pati, A Ekert, M Ericsson, DKL Oi, V Vedral

Abstract:

The only difference between Bhandari's viewpoint [quant-ph/0108058] and ours [Phys. Rev. Lett. 85, 2845 (2000)] is that our phase is defined modulo $2\pi$, whereas Bhandari argues that two phases that differ by $2\pi n$, $n$ integer, may be distinguished experimentally in a history-dependent manner.

Reply to `Singularities of the mixed state phase'

(2001)

Authors:

J Anandan, E Sj枚qvist, AK Pati, A Ekert, M Ericsson, DKL Oi, V Vedral

What is quantum computation?

International Journal of Modern Physics A 16:20 (2001) 3335-3363

Authors:

A Ekert, P Hayden, H Inamori, DKL Li

Abstract:

"Information is physical and any processing of information is always performed by physical means," an innocent-sounding statement, but its consequences are profound. When quantum effects become important, for example, at the level of single atoms and photons, the classical theory of computation becomes fundamentally inadequate. Entirely new modes of computation and information processing become possible. In the last few years there has been an explosion of theoretical and experimental research in quantum computation. In this brief review we describe some of these developments.

Quantum entanglement and secrecy

International Journal of Modern Physics A 16:19 (2001) 3191-3202

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