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Τετάρτη 18 Νοεμβρίου 2015

Silicon and Photon Quantum Computing and Communication

                        





Silicon and Photon Quantum Computing and Communication







Δημοσιεύτηκε στις 4 Μαΐ 2013
Across
the world, we are seeing the emergence of a global quantum
communications network and a mastery of several different flavors of
quantum computing, as seen here in The Center For Quantum Computation
& Communication Technology, University of New South Wales at Sydney,
Australia.

From D-wave systems superconducting quantum computer
facilities in Canada we have seen that it is possible to construct
circuits that can simulate the quantum adiabatic Hamiltonian.

However,
the need for a gate-based quantum computer has seen many different
technological approaches, such as Electron spin-based quantum
computation on silicon and controlled photon-entanglement. These methods
in gate quantum computing and communication will be the key in
developing ways to make and break encryptions in excess of the current
RSA encryption algorithm, as the quantum solutions of Shor's algorithm
make factorizing large prime numbers possible.

Currently, there are 4 known technologies under development which can allow for a scalable gate-quantum computer:

Superconducting Josephson Junctions
Single Phosphorus Atom-Doped Silicon
NV- centers in Diamond
Majorana Fermions in Topological Insulators
ANAΡΤΗΣΗ ΑΠΟ ΤΟ YOUTUBE 19/11/2015






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