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Träfflista för sökning "WFRF:(Felicetti L.) "

Search: WFRF:(Felicetti L.)

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1.
  • Watanabe, A, et al. (author)
  • Gunnar Fant 60 years
  • 1979
  • In: TMH-QPSR. ; 20:2, s. 1-45
  • Journal article (peer-reviewed)
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2.
  • Castro, Marley, et al. (author)
  • Multi-Cubesat Mission For Auroral Acceleration Region Studies
  • 2021
  • In: IAC 2021 Congress Proceedings, 72nd International Astronautical Congress (IAC), Dubai, United Arab Emirates. - : International Astronautical Federation (IAF).
  • Conference paper (peer-reviewed)abstract
    • The Auroral Acceleration Region (AAR) is a key region in understanding the Magnetosphere-Ionosphere interaction. To understand the physical, spatial and temporal features of the region, multi-point measurements are required. Distributed small-satellite missions such as constellations of multiple nano satellites (for example multi-unit CubeSats) would enable such type of measurements. The capabilities of such a mission will highly depend on the number of satellites - one reason that makes low-cost platforms like CubeSats a very promising choice. In a previous study, the state-of-the-art of miniaturized payloads for AAR measurements was analyzed and evaluated and capabilities of different multi-CubeSat configurations equipped with such payloads in addressing different open questions in AAR were discussed. In this paper the mission analysis and possible mission design, as well as necessary technology developments of such multi-CubeSat mission are identified and presented.
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3.
  • Felicetti, S., et al. (author)
  • Dynamical Casimir Effect Entangles Artificial Atoms
  • 2014
  • In: Physical Review Letters. - 1079-7114 .- 0031-9007. ; 113:9, s. Art. No. 093602-
  • Journal article (peer-reviewed)abstract
    • We show that the physics underlying the dynamical Casimir effect may generate multipartite quantum correlations. To achieve it, we propose a circuit quantum electrodynamics scenario involving superconducting quantum interference devices, cavities, and superconducting qubits, also called artificial atoms. Our results predict the generation of highly entangled states for two and three superconducting qubits in different geometric configurations with realistic parameters. This proposal paves the way for a scalable method of multipartite entanglement generation in cavity networks through dynamical Casimir physics.
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