4.8 Article

Generation and confirmation of a (100 x 100)-dimensional entangled quantum system

Publisher

NATL ACAD SCIENCES
DOI: 10.1073/pnas.1402365111

Keywords

photonic spatial modes; quantum optics; Schmidt rank; entanglement witness

Funding

  1. European Research Council [(ERC)] [227844 QIT4QAD]
  2. European Research Council [(ERC) European Union (EU)] [600645]
  3. Austrian Science Fund FWF
  4. Foundations and Applications of Quantum Science (FoQus) [Spezialforschungsbereich (SFB) F40]
  5. Complex Quantum Systems (CoQus) [W1210-2]
  6. Marie Curie Intra-European Fellowships for Career Development Grant [QuaCoCoS-302021]
  7. EU Marie Curie Fellowship [PIOF-GA-2012-329851]
  8. Austrian Science Fund (FWF) [W1210] Funding Source: Austrian Science Fund (FWF)

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Entangled quantum systems have properties that have fundamentally overthrown the classical worldview. Increasing the complexity of entangled states by expanding their dimensionality allows the implementation of novel fundamental tests of nature, and moreover also enables genuinely newprotocols for quantum information processing. Here we present the creation of a (100 x 100)-dimensional entangled quantum system, using spatial modes of photons. For its verification we develop a novel nonlinear criterion which infers entanglement dimensionality of a global state by using only information about its subspace correlations. This allows very practical experimental implementation as well as highly efficient extraction of entanglement dimensionality information. Applications in quantum cryptography and other protocols are very promising.

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