• About
  • Policies
  • What is open access
  • Library
  • Contact
Advanced search
      View Item 
      •   BUIR Home
      • Scholarly Publications
      • Faculty of Science
      • Department of Physics
      • View Item
      •   BUIR Home
      • Scholarly Publications
      • Faculty of Science
      • Department of Physics
      • View Item
      JavaScript is disabled for your browser. Some features of this site may not work without it.

      Oscillatory exchange coupling in magnetic molecules

      Thumbnail
      View / Download
      475.0 Kb
      Author(s)
      Sevincli, H.
      Senger, R. T.
      Durgun, Engin
      Çıracı, Salim
      Date
      2007
      Source Title
      Journal of Physics Condensed Matter
      Print ISSN
      0953-8984
      Publisher
      IOP Publishing
      Volume
      19
      Issue
      21
      Pages
      1 - 13
      Language
      English
      Type
      Article
      Item Usage Stats
      235
      views
      212
      downloads
      Abstract
      Recently, first-principles calculations based on the spin-dependent density functional theory (DFT) have revealed that the magnetic ground state of a finite linear carbon chain capped by two transition metal (TM) atoms alternates between ferromagnetic and antiferromagnetic configurations depending on the number of carbon atoms. The character of indirect exchange coupling in this nanoscale, quasi-zero-dimensional system is different from those analogous extended structures consisting of magnetic layers separated by a non-magnetic spacer (or magnetic impurities in a non-magnetic host material) and a formulation based on an atomic picture is needed. We present a tight-binding model which provides a theoretical framework to the underlying mechanism of the exchange coupling in molecular structures. The model calculations are capable of reproducing the essential features of the DFT results for the indirect exchange coupling and the atomic magnetic moments in the TM-Cn-TM structures as functions of the number of carbon atoms. In nanostructures consisting of a few atoms the concepts of extended wavefunctions and the band theory lose their validity, and hence the oscillatory exchange coupling turns out to be a consequence of quantum interference effects due to the spin-dependent onsite and hopping energies. © IOP Publishing Ltd.
      Keywords
      Density functional theory
      Exchange coupling
      Ground state
      Magnetic moments
      Molecular structure
      Nanostructured materials
      Quantum interference phenomena
      Carbon chain
      First principles calculations
      Hopping energies
      Magnetic layers
      Magnetic materials
      Permalink
      http://hdl.handle.net/11693/23456
      Published Version (Please cite this version)
      http://dx.doi.org/10.1088/0953-8984/19/21/216205
      Collections
      • Department of Physics 2550
      • Institute of Materials Science and Nanotechnology (UNAM) 2258
      Show full item record

      Browse

      All of BUIRCommunities & CollectionsTitlesAuthorsAdvisorsBy Issue DateKeywordsTypeDepartmentsCoursesThis CollectionTitlesAuthorsAdvisorsBy Issue DateKeywordsTypeDepartmentsCourses

      My Account

      Login

      Statistics

      View Usage StatisticsView Google Analytics Statistics

      Bilkent University

      If you have trouble accessing this page and need to request an alternate format, contact the site administrator. Phone: (312) 290 2976
      © Bilkent University - Library IT

      Contact Us | Send Feedback | Off-Campus Access | Admin | Privacy