Please use this identifier to cite or link to this item: https://dspace.ctu.edu.vn/jspui/handle/123456789/4980
Title: Observation of a Three-Dimensional Quasi-Long-Range Electronic Supermodulation in YBa₂Cu₃O7-ₓ/La0.₇Ca0.₃MnO₃ Heterostructures
Authors: He, Rui-Hua
Vũ, Thanh Trà
Arenholz, E.
Chu, Y.-H.
Graf, M.J.
Yang, W.L.
Kong, J.
Mion, Thomas R.
Shafer, Padraic
He, Junfeng
Lin, J.-Y.
Chuang, Y.-D.
He, Qing
Issue Date: 2016
Series/Report no.: Nature Communications;7 .- p.1-8
Abstract: Recent developments in high-temperature superconductivity highlight a generic tendency of the cuprates to develop competing electronic (charge) supermodulations. While coupled with the lattice and showing different characteristics in different materials, these supermodulations themselves are generally conceived to be quasi-two-dimensional, residing mainly in individual CuO₂ planes, and poorly correlated along the c axis. Here we observed with resonant elastic X-ray scattering a distinct type of electronic supermodulation in YBa₂Cu₃O₇_ₓ (YBCO) thin films grown epitaxially on La0.₇Ca0.₃MnO₃ (LCMO). This supermodulation has a periodicity nearly commensurate with four lattice constants in-plane, eight out of plane, with long correlation lengths in three dimensions. It sets in far above the superconducting transition temperature and competes with superconductivity below this temperature for electronic states predominantly in the CuO₂ plane. Our finding sheds light on the nature of charge ordering in cuprates as well as a reported long-range proximity effect between superconductivity and ferromagnetism in YBCO/LCMO heterostructures.
URI: http://localhost:8080//jspui/handle/123456789/4980
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