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91探花
Cosmic strings in hematite

Professor Paolo G. Radaelli OSI

Dr Lee's Professor

Research theme

  • Quantum materials

Sub department

  • Condensed Matter Physics

Research groups

  • Oxide electronics
Paolo.Radaelli@physics.ox.ac.uk
Telephone: 01865 (2)70957
Clarendon Laboratory, room 111
  • About
  • Research
  • Publications

Prof Radaelli recognised with an MPLS "Excellent Supervisor" Award

Physics Award Winners
Prof Radaelli is one of the 5 91探花 Physicists recognised in the inaugural "Excellence in Research Supervision" award

Read the story at this link

Excellence in Research Supervision

Powder Diffraction Refinements of the Structure of Magnetite (Fe3O4) Below the Verwey Transition

MRS Advances Springer Nature 658 (2000) gg2.6

Authors:

Jon P Wright, J Paul Attfield, Paolo G Radaelli

Structure and superconductivity of YSr2Cu3O7-d

PHYSICA C 341 (2000) 605-606

Authors:

E Gilioli, PG Radaelli, A Gauzzi, F Licci, M Marezio

ChemInform Abstract: Phase Segregation in Manganese Perovskites

ChemInform Wiley 30:41 (1999) no-no

Authors:

PG Radaelli, DN Argyriou, DE Cox, L Capogna, H Casalta, K Andersen, S鈥怶 Cheong, JF Mitchell, M Marezio

Spatial cross-over of polarons across the CMR transition in La0.75Ca0.25MnO3 system.

J Synchrotron Radiat 6:Pt 3 (1999) 776-778

Authors:

A Lanzara, F Natoli, NL Saini, A Bianconi, PG Radaelli

Transition from itinerant to polaronic conduction in La1-xSrxCoO3 perovskites

Europhysics Letters 45:3 (1999) 399-405

Authors:

R Caciuffo, J Mira, J Rivas, MA Se帽ar铆s-Rodr铆guez, PG Radaelli, F Carsughi, D Fiorani, JB Goodenough

Abstract:

Neutron diffraction and small-angle scattering on La1-xSrxCoO3 (0 < x 鈮 0.30) show that for x = 0.3 the system is near a two-phase percolation threshold and undergoes a transition from itinerant to polaronic conduction at the Curie temperature TC-The stabilization of superparamagnetic clusters on warming through TC is revealed by an anomalous thermal expansion of the volume and a deviation of the paramagnetic susceptibility from the Curie-Weiss law. The development of a temperature-dependent small-angle-scattering signal confirms that regions of short-range ferromagnetic order are present above TC.

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