科技报告详细信息
Polaron Coherence Condensation As the Mechanism for Colossal Magnetoresistance in Layered Manganites
Mannella, N. ; Yang, W.L. ; Tanaka, K. ; Zhou, X.J. ; /SLAC /LBNL, ALS ; Zheng, H. ; Mitchell, J.F. ; /Argonne ; Zaanen, J. ; /Leiden U. ; Devereaux, T.P. ; /Waterloo U. ; Nagaosa, N. ; /CREST, Japan Sci. Tech. Corp. ; Hussain, Z. ; /LBNL, ALS ; Shen, Z.-X. ; /SLAC
关键词: CURIE POINT;    ELECTRIC CONDUCTIVITY;    EXCHANGE INTERACTIONS;    MAGNETORESISTANCE;    PHOTOEMISSION;    POLARONS;    SPECTROSCOPY;    TRANSPORT General Physics;    PHYS;   
DOI  :  10.2172/920014
RP-ID  :  SLAC-PUB-13017
PID  :  OSTI ID: 920014
Others  :  Other: arXiv:0711.1732
Others  :  TRN: US0807398
学科分类:物理(综合)
美国|英语
来源: SciTech Connect
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【 摘 要 】
Angle-resolved photoemission spectroscopy data for the bilayer manganite La{sub 1.2}Sr{sub 1.8}Mn{sub 2}O{sub 7} show that, upon lowering the temperature below the Curie point, a coherent polaronic metallic groundstate emerges very rapidly with well defined quasiparticles which track remarkably well the electrical conductivity, consistent with macroscopic transport properties. Our data suggest that the mechanism leading to the insulator-to-metal transition in La{sub 1.2}Sr{sub 1.8}Mn{sub 2}O{sub 7} can be regarded as a polaron coherence condensation process acting in concert with the Double Exchange interaction.
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