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Showing 1 to 5 of 5 for “"Measurement-based quantum computation"”.

  1. Measurement-based quantum computation with cluster states

    In this thesis we describe the one-way quantum computer (QCc), a scheme of universal quantum computation that consists entirely of one-qubit measurements on a highly entangled multi-particle state, the cluster state. We prove universality of the QCc, describe the underlying computational model and …

    lmu-germany Repository record for Measurement-based quantum computation with cluster states (opens in a new tab)

  2. Benchmarking measurement-based quantum computation on graph states

    Measurement-based quantum computation is a form of quantum computing that operates on a prepared entangled graph state, typically a cluster state. In this dissertation, we will detail the creation of graph states across various physical platforms using different entangling gates. We will then …

    vt Repository record for Benchmarking measurement-based quantum computation on graph states (opens in a new tab)

  3. Relative performance of measurement-based quantum computation models under noisy conditions

    … the analysis of two similar models of measurement-based quantum computation subject to noise, individually and in comparison to one another, to determine if one hosts any innate advantage over the other.

    qu-belfast Repository record for Relative performance of measurement-based quantum computation models under noisy conditions (opens in a new tab)

  4. Many-body entanglement in gapped quantum systems : representation, classification, and application

    Entanglement is a special form of quantum correlation that exists among quantum particles and it has been realized that surprising things can happen when a large number of particles are entangled together. For example, topological orders emerge in condensed matter systems where the constituent 1023 …

    mit Repository record for Many-body entanglement in gapped quantum systems : representation, classification, and application (opens in a new tab)

  5. System characterisation under experimental constraints

    Physically realising quantum computation is our long term goal. Currently characterising and verifying quantum states is a hard problem. Verification is necessary in order to understand and control quantum systems. There are also issues in the physical realisation of these systems, the apparatus …

    strathclyde Repository record for System characterisation under experimental constraints (opens in a new tab)