Quantum tunneling and magnetic relaxation in (formula presented) chloropropionate

  • S. W. Yoon
  • , M. Heu
  • , W. S. Jeon
  • , D. Y. Jung
  • , B. J. Suh
  • , S. Yoon

Research output: Contribution to journalArticlepeer-review

Abstract

We have synthesized the single-molecule magnet (formula presented) chloropropionate and performed magnetization measurements in an applied field parallel to the easy axis of magnetization of the crystal. We found the spin (formula presented) = 10 ground state and observed distinct steps in the hysteresis loops, typical of quantum tunneling of magnetization. The effective barrier height has been determined from the analyses of magnetization curves (formula presented) and (formula presented) and also from the magnetic relaxation measurements. Magnetic relaxation follows the stretched exponential law above 2 K. Compared to (formula presented) acetate, the relaxation rate is enhanced significantly at resonance fields, while it is more or less the same at off-resonance fields. We ascribe this observation to the transverse anisotropy in (formula presented) chloropropionate.

Original languageEnglish
JournalPhysical Review B - Condensed Matter and Materials Physics
Volume67
Issue number5
DOIs
StatePublished - 5 Feb 2003

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