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  2. Quantum computing - Wikipedia

    en.wikipedia.org/wiki/Quantum_computing

    Any quantum computation (which is, in the above formalism, any unitary matrix of size over qubits) can be represented as a network of quantum logic gates from a fairly small family of gates. A choice of gate family that enables this construction is known as a universal gate set , since a computer that can run such circuits is a universal ...

  3. Qubit - Wikipedia

    en.wikipedia.org/wiki/Qubit

    In quantum computing, a qubit (/ ˈ k juː b ɪ t /) or quantum bit is a basic unit of quantum information—the quantum version of the classic binary bit physically realized with a two-state device. A qubit is a two-state (or two-level) quantum-mechanical system , one of the simplest quantum systems displaying the peculiarity of quantum mechanics.

  4. Physical and logical qubits - Wikipedia

    en.wikipedia.org/wiki/Physical_and_logical_qubits

    A logical qubit specifies how a single qubit should behave in a quantum algorithm, subject to quantum logic operations which can be built out of quantum logic gates. However, issues in current technologies preclude single two-state quantum systems , which can be used as physical qubits, from reliably encoding and retaining this information for ...

  5. List of proposed quantum registers - Wikipedia

    en.wikipedia.org/wiki/List_of_proposed_quantum...

    Electrons-on-helium quantum computer (qubit is the electron spin) Cavity quantum electrodynamics (CQED) (qubit provided by the internal state of trapped atoms coupled to high-finesse cavities) Molecular magnet [16] (qubit given by spin states) Fullerene-based ESR quantum computer (qubit based on the electronic spin of atoms or molecules encased ...

  6. Bennett's laws - Wikipedia

    en.wikipedia.org/wiki/Bennett's_laws

    Bennett's laws of quantum information are: 1 qubit 1 bit (classical), 1 qubit 1 ebit (entanglement bit), 1 ebit + 1 qubit 2 bits (i.e. superdense coding), 1 ebit + 2 bits 1 qubit (i.e. quantum teleportation),

  7. Quantum superposition - Wikipedia

    en.wikipedia.org/wiki/Quantum_superposition

    [11]: 31 Controlling the superposition of qubits is a central challenge in quantum computation. Qubit systems like nuclear spins with small coupling strength are robust to outside disturbances but the same small coupling makes it difficult to readout results.

  8. Quantum circuit - Wikipedia

    en.wikipedia.org/wiki/Quantum_circuit

    The minimum set of actions that a circuit needs to be able to perform on the qubits to enable quantum computation is known as DiVincenzo's criteria. Circuits are written such that the horizontal axis is time, starting at the left hand side and ending at the right. Horizontal lines are qubits, doubled lines represent classical bits. The items ...

  9. Qiskit - Wikipedia

    en.wikipedia.org/wiki/QISKit

    Qiskit is made of elements that work together to enable quantum computing. The central goal of Qiskit is to build a software stack that makes it easier for anyone to use quantum computers, regardless of their skill level or area of interest; Qiskit allows users to design experiments and applications and run them on real quantum computers and/or classical simulators.