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  • Broschiertes Buch

In this book an extensive overview on the results obtained during the last decade and on recent achievements in the study of molecular magnets by means of Nuclear Magnetic Resonance, Muon Spin Rotation, Magnetic Resonance Imaging and Mossbauer techniques is presented. The aim is to introduce the reader to these techniques and to give a general background on their application to molecular spin systems.…mehr

Produktbeschreibung
In this book an extensive overview on the results obtained during the last decade and on recent achievements in the study of molecular magnets by means of Nuclear Magnetic Resonance, Muon Spin Rotation, Magnetic Resonance Imaging and Mossbauer techniques is presented. The aim is to introduce the reader to these techniques and to give a general background on their application to molecular spin systems.

  • Produktdetails
  • Verlag: Springer / Springer, Berlin
  • Artikelnr. des Verlages: 978-88-470-0531-0
  • Erscheinungstermin: 9. Mai 2007
  • Englisch
  • Abmessung: 251mm x 165mm x 16mm
  • Gewicht: 560g
  • ISBN-13: 9788847005310
  • ISBN-10: 8847005310
  • Artikelnr.: 21416686
Autorenporträt
Pietro Carretta, Università di Pavia, Italy / Alessandro Lascialfari, Università di Pavia, Italy
Inhaltsangabe
Nuclear Magnetic Resonance.- A short introduction to Nuclear Magnetic Resonance.- NMR in magnetic single molecule magnets.- Structure, synthesis and characterization of contrast agents for magnetic resonance molecular imaging.- Basic concepts of Magnetic Resonance Imaging.- Phases, phase transitions and spin dynamics in strongly correlated electron systems, from antiferromagnets to HTC superconductors: NMR-NQR insights.- Muon Spin Rotation.- to ?SR.- Muon spin rotation of organic compounds.- Stochastic Landau-Zener model, and experimental estimates of dephasing time in molecular magnets.- Mössbauer Spectroscopy.- Basic principles of Mössbauer spectroscopy and applications.- Line shape of Mössbauer relaxation spectra.- Studies of spin fluctuations in single molecular magnets by using Mössbauer spectroscopy.