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Last Updated: Nov-20-2008
   
Quantum Microprocessor - the computer processing chip technology of the future using nanotechnology and the latest quantum physics discoveries!

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    Quantum computer From Wikipedia, the free encyclopedia   (Redirected from Quantum Computer) The references used in this article may be clearer with a different or consistent style of citation, footnoting, or external linking.

    The Bloch sphere is a representation of a qubit, the fundamental building block of quantum computers.

    The Bloch sphere is a representation of a qubit, the fundamental building block of quantum computers. A quantum computer is a device for computation that makes direct use of distinctively quantum mechanical phenomena, such as superposition and entanglement, to perform operations on data. In a classical (or conventional) computer, information is stored as bits; in a quantum computer, it is stored as qubits (quantum binary digits). The basic principle of quantum computation is that the quantum properties can be used to represent and structure data, and that quantum mechanisms can be devised and built to perform operations with these data.[1] Although quantum computing is still in its infancy, experiments have been carried out in which quantum computational operations were executed on a very small number of qubits. Both practical and theoretical research continues with interest, and many national government and military funding agencies support quantum computing research to develop quantum computers for both civilian and national security purposes, such as cryptanalysis.[2] If large-scale quantum computers can be built, they will be able to solve certain problems much faster than any of our current classical computers (for example Shor's algorithm). Quantum computers are different from other computers such as DNA computers and traditional computers based on transistors. Some computing architectures such as optical computers [3] may use classical superposition of electromagnetic waves. Without some specifically quantum mechanical resources such as entanglement, it is conjectured that an exponential advantage over classical computers is not possible.[4]

     

       
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