4.8 Article

Entanglement Polytopes: Multiparticle Entanglement from Single-Particle Information

期刊

SCIENCE
卷 340, 期 6137, 页码 1205-1208

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/science.1232957

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资金

  1. German Science Foundation [CH 843/2-1]
  2. Swiss National Science Foundation [PP00P2_128455, 20CH21_138799, 200021_138071]
  3. Swiss National Center of Competence in Research Quantum Science and Technology
  4. Excellence Initiative of the German Federal Government [ZUK 43]
  5. Excellence Initiative of the German State Government [ZUK 43]
  6. Swiss National Science Foundation (SNF) [20CH21_138799, 200021_138071, PP00P2_128455] Funding Source: Swiss National Science Foundation (SNF)

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Entangled many-body states are an essential resource for quantum computing and interferometry. Determining the type of entanglement present in a system usually requires access to an exponential number of parameters. We show that in the case of pure, multiparticle quantum states, features of the global entanglement can already be extracted from local information alone. This is achieved by associating any given class of entanglement with an entanglement polytope-a geometric object that characterizes the single-particle states compatible with that class. Our results, applicable to systems of arbitrary size and statistics, give rise to local witnesses for global pure-state entanglement and can be generalized to states affected by low levels of noise.

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