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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 Oxford Physicists recognised in the inaugural "Excellence in Research Supervision" award

Read the story at this link

Excellence in Research Supervision

Mechanical against chemical pressure in the Y(Ba1-xSrx)2Cu3O7-d system

Physica C Superconductivity and Its Applications 341-348:PART 1 (2000) 375-378

Authors:

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

Abstract:

The structural refinement of YSr2Cu3O6.84 allows us to analyze why the chemical pressure applied to YBa2Cu3O6.84, by substituting Sr for Ba, results in a decrease of Tc (88 to 63 K). Even though the chemical pressure induces a volume decrease of 5.7%, the thickness along the c axis of the superconducting block increases by 3.0%. This behavior seems to be due to the incompressibility of the Y coordination polyhedron. The SrO layer becomes negatively strained since the Sr polyhedron does not reduce along with the Sr cation substitution. The calculated bond valence sum for the latter cation is 1.63 v.u. instead of the expected 2. The apical distance of the pyramid around Cu2 decreases drastically from 2.30 to 2.09 脜. All these features induce an instability within YSr2Cu3O6.84, which makes it difficult for the extra oxygen to go in and out of the structure as it does in its Ba counterpart. This instability would also reduce the hole transfer from the CuO chains to the superconducting CuO2 planes. 漏 2000 Elsevier Science B.V All rights reserved.

Neutron scattering studies of phase segregation in Pr0.7Ca0.3MnO3

Physica B: Condensed Matter 276-278 (2000) 551-553

Authors:

PG Radaelli, RM Ibberson, SW Cheong, JF Mitchell

Abstract:

The phase segregation in the narrow-bandwidth manganite Pr0.7Ca0.3MnO3 were investigated using high-resolution time-of-flight neutron powder diffraction. Results demonstrate that the phase segregation in Pr0.7Ca0.3MnO3 is unrelated to electronic phase segregation but is primarily driven by chemical disorder and intra-granular strains, similar to martensitic phase transitions.

Charge, orbital and magnetic ordering in La0.333Ca0.667MnO3

EUROPEAN POWDER DIFFRACTION, PTS 1 AND 2 321-3 (2000) 818-822

Authors:

L Capogna, PG Radaelli, SW Cheong, M Marezio

ECNS '99 - Young Scientists Forum

PHYSICA B 276 (2000) 45-51

Authors:

M Ceretti, S Janssen, D McMorrow, P Radaelli, U Steigenberger

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

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