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Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies

The local electronic and atomic structures of the high-quality single crystal of SrFeO(3-δ) (δ~0.19) were studied using temperature-dependent x-ray absorption and valence-band photoemission spectroscopy (VB-PES) to investigate the origin of anisotropic resistivity in the ab-plane and along the c-axi...

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Autores principales: Hsieh, S. H., Solanki, R. S., Wang, Y. F., Shao, Y. C., Lee, S. H., Yao, C. H., Du, C. H., Wang, H. T., Chiou, J. W., Chin, Y. Y., Tsai, H. M., Chen, J.-L., Pao, C. W., Cheng, C.-M., Chen, W.-C., Lin, H. J., Lee, J. F., Chou, F. C., Pong, W. F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5428035/
https://www.ncbi.nlm.nih.gov/pubmed/28279015
http://dx.doi.org/10.1038/s41598-017-00247-z
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author Hsieh, S. H.
Solanki, R. S.
Wang, Y. F.
Shao, Y. C.
Lee, S. H.
Yao, C. H.
Du, C. H.
Wang, H. T.
Chiou, J. W.
Chin, Y. Y.
Tsai, H. M.
Chen, J.-L.
Pao, C. W.
Cheng, C.-M.
Chen, W.-C.
Lin, H. J.
Lee, J. F.
Chou, F. C.
Pong, W. F.
author_facet Hsieh, S. H.
Solanki, R. S.
Wang, Y. F.
Shao, Y. C.
Lee, S. H.
Yao, C. H.
Du, C. H.
Wang, H. T.
Chiou, J. W.
Chin, Y. Y.
Tsai, H. M.
Chen, J.-L.
Pao, C. W.
Cheng, C.-M.
Chen, W.-C.
Lin, H. J.
Lee, J. F.
Chou, F. C.
Pong, W. F.
author_sort Hsieh, S. H.
collection PubMed
description The local electronic and atomic structures of the high-quality single crystal of SrFeO(3-δ) (δ~0.19) were studied using temperature-dependent x-ray absorption and valence-band photoemission spectroscopy (VB-PES) to investigate the origin of anisotropic resistivity in the ab-plane and along the c-axis close to the region of thermal hysteresis (near temperature for susceptibility maximum, T(m)~78 K). All experiments herein were conducted during warming and cooling processes. The Fe L (3,2)-edge X-ray linear dichroism results show that during cooling from room temperature to below the transition temperature, the unoccupied Fe 3d e (g) states remain in persistently out-of-plane 3d (3z) (2) (-r) (2) orbitals. In contrast, in the warming process below the transition temperature, they change from 3d (3z) (2) (-r) (2) to in-plane 3d (x) (2) (-y) (2) orbitals. The nearest-neighbor (NN) Fe-O bond lengths also exhibit anisotropic behavior in the ab-plane and along the c-axis below T(m). The anisotropic NN Fe-O bond lengths and Debye-Waller factors stabilize the in-plane Fe 3d (x) (2) (-y) (2) and out-of-plane 3d (3z) (2) (-r) (2) orbitals during warming and cooling, respectively. Additionally, a VB-PES study further confirms that a relative band gap opens at low temperature in both the ab-plane and along the c-axis, providing the clear evidence of the charge-density-wave nature of SrFeO(3-δ) (δ~0.19) single crystal.
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spelling pubmed-54280352017-05-15 Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies Hsieh, S. H. Solanki, R. S. Wang, Y. F. Shao, Y. C. Lee, S. H. Yao, C. H. Du, C. H. Wang, H. T. Chiou, J. W. Chin, Y. Y. Tsai, H. M. Chen, J.-L. Pao, C. W. Cheng, C.-M. Chen, W.-C. Lin, H. J. Lee, J. F. Chou, F. C. Pong, W. F. Sci Rep Article The local electronic and atomic structures of the high-quality single crystal of SrFeO(3-δ) (δ~0.19) were studied using temperature-dependent x-ray absorption and valence-band photoemission spectroscopy (VB-PES) to investigate the origin of anisotropic resistivity in the ab-plane and along the c-axis close to the region of thermal hysteresis (near temperature for susceptibility maximum, T(m)~78 K). All experiments herein were conducted during warming and cooling processes. The Fe L (3,2)-edge X-ray linear dichroism results show that during cooling from room temperature to below the transition temperature, the unoccupied Fe 3d e (g) states remain in persistently out-of-plane 3d (3z) (2) (-r) (2) orbitals. In contrast, in the warming process below the transition temperature, they change from 3d (3z) (2) (-r) (2) to in-plane 3d (x) (2) (-y) (2) orbitals. The nearest-neighbor (NN) Fe-O bond lengths also exhibit anisotropic behavior in the ab-plane and along the c-axis below T(m). The anisotropic NN Fe-O bond lengths and Debye-Waller factors stabilize the in-plane Fe 3d (x) (2) (-y) (2) and out-of-plane 3d (3z) (2) (-r) (2) orbitals during warming and cooling, respectively. Additionally, a VB-PES study further confirms that a relative band gap opens at low temperature in both the ab-plane and along the c-axis, providing the clear evidence of the charge-density-wave nature of SrFeO(3-δ) (δ~0.19) single crystal. Nature Publishing Group UK 2017-03-13 /pmc/articles/PMC5428035/ /pubmed/28279015 http://dx.doi.org/10.1038/s41598-017-00247-z Text en © The Author(s) 2017 This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Hsieh, S. H.
Solanki, R. S.
Wang, Y. F.
Shao, Y. C.
Lee, S. H.
Yao, C. H.
Du, C. H.
Wang, H. T.
Chiou, J. W.
Chin, Y. Y.
Tsai, H. M.
Chen, J.-L.
Pao, C. W.
Cheng, C.-M.
Chen, W.-C.
Lin, H. J.
Lee, J. F.
Chou, F. C.
Pong, W. F.
Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies
title Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies
title_full Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies
title_fullStr Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies
title_full_unstemmed Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies
title_short Anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal SrFeO(3-δ): X-ray absorption and photoemission studies
title_sort anisotropy in the thermal hysteresis of resistivity and charge density wave nature of single crystal srfeo(3-δ): x-ray absorption and photoemission studies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5428035/
https://www.ncbi.nlm.nih.gov/pubmed/28279015
http://dx.doi.org/10.1038/s41598-017-00247-z
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