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  2. Charles H. Bennett (physicist) - Wikipedia

    en.wikipedia.org/wiki/Charles_H._Bennett_(physicist)

    Charles Henry Bennett (born 1943) [1] is a physicist, information theorist and IBM Fellow at IBM Research.Bennett's recent work at IBM has concentrated on a re-examination of the physical basis of information, applying quantum physics to the problems surrounding information exchange.

  3. Quantum information - Wikipedia

    en.wikipedia.org/wiki/Quantum_information

    In the field of quantum information theory, the quantum systems studied are abstracted away from any real world counterpart. A qubit might for instance physically be a photon in a linear optical quantum computer, an ion in a trapped ion quantum computer, or it might be a large collection of atoms as in a superconducting quantum computer.

  4. Quantum information science - Wikipedia

    en.wikipedia.org/wiki/Quantum_information_science

    Quantum information science is a field that combines the principles of quantum mechanics with information theory to study the processing, analysis, and transmission of information. It covers both theoretical and experimental aspects of quantum physics, including the limits of what can be achieved with quantum information .

  5. Serenity (soundtrack) - Wikipedia

    en.wikipedia.org/wiki/Serenity_(soundtrack)

    The soundtrack to the 2005 motion picture Serenity was released on September 27, 2005. The film's score was composed by David Newman, and performed by the Hollywood Studio Symphony under Newman's direction. According to director Joss Whedon's sleeve notes for the album, Newman was recommended by Universal's music executives when he requested a ...

  6. Category:Quantum information theory - Wikipedia

    en.wikipedia.org/wiki/Category:Quantum...

    Quantum information theory is a generalization of classical information theory to use quantum-mechanical particles and interference. It is used in the study of quantum computation and quantum cryptography .

  7. Solovay–Kitaev theorem - Wikipedia

    en.wikipedia.org/wiki/Solovay–Kitaev_theorem

    In quantum information and computation, the Solovay–Kitaev theorem says that if a set of single-qubit quantum gates generates a dense subgroup of SU(2), then that set can be used to approximate any desired quantum gate with a short sequence of gates that can also be found efficiently.

  8. No-deleting theorem - Wikipedia

    en.wikipedia.org/wiki/No-deleting_theorem

    Like the no-cloning theorem this has important implications in quantum computing, quantum information theory and quantum mechanics in general. The process of quantum deleting takes two copies of an arbitrary, unknown quantum state at the input port and outputs a blank state along with the original. Mathematically, this can be described by:

  9. Bennett's laws - Wikipedia

    en.wikipedia.org/wiki/Bennett's_laws

    1 ebit + 2 bits 1 qubit (i.e. quantum teleportation), where ⩾ {\displaystyle \geqslant } indicates "can do the job of". These principles were formulated around 1993 by Charles H. Bennett .

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