Revisiting La sub(0.5)Sr sub(1.5)MnO sub(4) lattice distortion and charge ordering with multi-beam resonant diffraction

Sinusoidal wave type distortions of La sub(0.5)Sr sub(1.5)MnO sub(4) in the low-temperature orthorhombic phase were observed using multi-beam resonant X-ray diffraction (MRXD) with (7/4 7/4 0) fractional primary diffraction. Two four-beam diffractions with opposite asymmetry were measured at 6.5545k...

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Veröffentlicht in:Acta crystallographica. Section A, Foundations and advances Foundations and advances, 2017-01, Vol.73 (1), p.46-53
Hauptverfasser: Liu, Wen-Chung, Chiu, Yi-Hua, Kung, Ying-Yu, Liao, Po-Yu, Cheng, Chih-Hao, Chih, Yu-Chieh, Tsai, Yi-Wei, Chu, Chia-Hung, Lai, Chia-Hung, Huang, Di-Jing, Soo, Yun-Liang, Chang, Shih-Lin
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Sprache:eng
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Zusammenfassung:Sinusoidal wave type distortions of La sub(0.5)Sr sub(1.5)MnO sub(4) in the low-temperature orthorhombic phase were observed using multi-beam resonant X-ray diffraction (MRXD) with (7/4 7/4 0) fractional primary diffraction. Two four-beam diffractions with opposite asymmetry were measured at 6.5545keV and compared with the curves simulated by the dynamical X-ray diffraction theory. This approach provides the possibility of resolving the distortion modes which are perpendicular to the momentum transfer by a single azimuthal scan. The paper also demonstrates the sensitivity of MRXD profiles versus incident X-ray energy in the vicinity of the Mn K edge to the charge disproportion between the two manganese sites, reconfirming the small charge disproportion feature. Sinusoidal wave type distortions of La sub(0.5)Sr sub(1.5)MnO sub(4) in the low-temperature orthorhombic phase were observed using multi-beam resonant X-ray diffraction and dynamical theory.
ISSN:2053-2733
2053-2733
DOI:10.1107/S2053273316013759