About: Self-organized functional layers of molecular quantum bits     Goto   Sponge   NotDistinct   Permalink

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Description
  • 1) Identify molecules, substrates, and thin film structures leading to maximal population relaxation and quantum coherence times, which are relevant for applications in spintronics and quantum computing. 2) Achieve control over self-assembly of mono-layers and thin films of MNMs with defined surface densities and regular structures. 3) Correlate preparation conditions of the thin films of MNMs with the resulting thin film structure and its magnetic and electronic properties, leading to improvement of the functional thin films.
  • 1) Identify molecules, substrates, and thin film structures leading to maximal population relaxation and quantum coherence times, which are relevant for applications in spintronics and quantum computing. 2) Achieve control over self-assembly of mono-layers and thin films of MNMs with defined surface densities and regular structures. 3) Correlate preparation conditions of the thin films of MNMs with the resulting thin film structure and its magnetic and electronic properties, leading to improvement of the functional thin films. (en)
Title
  • Self-organized functional layers of molecular quantum bits (en)
  • Samouspořádané funkční vrstvy molekulárních kvantových bitů
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  • 7AMB15DE005
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  • molecular nanomagnets; self-organization; Langmuir-Blodgett deposition; molecular beam deposition; magnetic properties; structural properties; thin films (en)
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  • magnetic properties
  • self-organization
  • Langmuir-Blodgett deposition
  • molecular beam deposition
  • structural properties
  • molecular nanomagnets
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