Published 2002 | Version v1
Miscellaneous

A polarised neutron scattering study of the excitations in the CMR manganite La0.7Ca0.3MnO3

  • 1. Australian Nuclear Science and Technology Organisation, NSW (Australia). Neutron Scattering Group
  • 2. Keele University, (United Kingdom). Department of Physics
  • 3. Oak Ridge National Laboratory, (United States). Solid State Division
  • 4. Institut Laue Langevin, (France)
  • 5. Joint Research Center for Atomic Tehcnology, (Japan)

Description

Full text: The magnetic excitations in the colossal magnetoresistance (CMR) materials A1-xBxMnO3 (A = La, Pr, Nd, B = Ca, Sr) near the optimum doping x = 1/3 show some remarkable features. In a recent unpolarised inelastic neutron scattering experiment on La0.7Ca0.3MnO3 Dai et al. discovered that the magnetic excitations (spin waves) appeared to show considerable softening on approaching the Brillouin zone boundary. This softening appeared to occur when the spin wave dispersion relation crossed a number of flat optic phonon branches, and the possibility exists for interaction/hybridisation with the phonons. In order to separate the magnetic spin waves from the lattice dynamical phonons we have carried out an inelastic polarised neutron scattering study using the IN20 triple axis spectrometer at the Institut Laue Langevin, Grenoble, France. Because La0.7Ca0.3MnO3 is a ferromagnet and our principle aim is to separate magnetic from lattice dynamical excitations we have been able to use a novel 'half-polarised' configuration for the spectrometer, originally developed by Holden and Stirling, which boosts the signal by a factor of ∼ 10x. The technique used and the results for La0.7Ca0.3MnO3 will be described

Additional details

Publishing Information

Imprint Title
Twenty-six annual condensed matter physics meeting. Conference handbook
Imprint Pagination
146 p.
Journal Page Range
p. 40

Conference

Title
26. Annual condensed matter physics meeting
Dates
29 Jan - 1 Feb 2002
Place
Wagga Wagga, NSW (Australia)

Optional Information

Notes
2 refs.