S.B. Wilkins
Charge ordering and structural distortions at low temperature in La<SUB>2-2x</SUB>Sr<SUB>1+2x</SUB>Mn₂O₇ (x=0.475 and 0.5)
Wilkins, S.B.; Spencer, P.D.; Beale, T.A.W.; Hatton, P.D.; Zimmermann, M.V.; Brown, S.D.; Prabhakaran, D.; Boothroyd, A.T.
Authors
P.D. Spencer
T.A.W. Beale
P.D. Hatton
M.V. Zimmermann
S.D. Brown
D. Prabhakaran
A.T. Boothroyd
Abstract
In this paper we present x-ray scattering results of charge and orbital ordering in the bilayer manganite La222xSr112xMn2O7 with doping levels x50.5 and x50.475. Using high-energy x-ray scattering, the structural modulation due to the Jahn-Teller ordering and the charge ordering due to the Mn31/Mn41 pattern have been measured. Both the x50.5 and x50.475 samples are found to display charge and Jahn-Teller order. We have confirmed that the wave vectors of the Jahn-Teller order, charge order, and orbital order are QW 5(0.25,0.25,0), QW 5(0.5,0.5,0) and QW 5(0.25,0.25,0). The origin of these has been confirmed by resonant x-ray scattering in the vicinity of the Mn K edge using polarization analysis. Contrary to previous studies, the Jahn-Teller order is found to be not reentrant, but is found to reduce in intensity at temperatures below 140 K for both samples. Charge ordering was also detected in the x50.5 sample below this temperature.
Citation
Wilkins, S., Spencer, P., Beale, T., Hatton, P., Zimmermann, M., Brown, S., …Boothroyd, A. (2003). Charge ordering and structural distortions at low temperature in La2-2xSr1+2xMn₂O₇ (x=0.475 and 0.5). Physical review B, 67(20), https://doi.org/10.1103/physrevb.67.205110
Journal Article Type | Article |
---|---|
Publication Date | 2003-05 |
Deposit Date | Jan 9, 2009 |
Publicly Available Date | Sep 13, 2010 |
Journal | Physical Review B |
Print ISSN | 1098-0121 |
Electronic ISSN | 1550-235X |
Publisher | American Physical Society |
Peer Reviewed | Peer Reviewed |
Volume | 67 |
Issue | 20 |
DOI | https://doi.org/10.1103/physrevb.67.205110 |
Keywords | X-ray-scattering, Giant magnetoresistance, Manganese oxides, l LASR2MN2O7, Manganites, Diffraction, Transition, Beamline, Behavior. |
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