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Real Space Visualization of Competing Phases in La0.6Sr2.4Mn2O7 Single Crystals

Publication ,  Journal Article
Zheng, Q; Schreiber, NJ; Zheng, H; Yan, J; McGuire, MA; Mitchell, JF; Chi, M; Sales, BC
Published in: Chemistry of Materials
November 13, 2018

Correlated quantum materials are expected to provide the foundation for the next generation of information or energy technologies. A key feature of these materials is the proximity of multiple ground states close in energy, which results in the ability to tune properties with small changes in an external parameter such as magnetic field, composition, or temperature. For example, the colossal magnetoresistance exhibited by manganites is related to charge and orbital ordering and results from a metallic ferromagnetic phase in proximity to a paramagnetic insulating phase. The presence of competing ground states, at the heart of the physics and functionality of these materials, often results in nanoscale phase separation. Probing nanoscale phase separation with conventional diffraction techniques alone is not adequate, particularly when the domains are small or nanosized. In the present work we use a scanning transmission electron microscopy image-based technique of picometer precision strain maps (PPSM) to directly visualize the competing nanoscale phases with charge and orbital ordering in a double-layer manganite. This work underscores the role of subtle structural distortions in determining the electron physics in correlated quantum materials and provides insights into designing new functionalities via spatially tuning multiple competing ground states.

Duke Scholars

Published In

Chemistry of Materials

DOI

EISSN

1520-5002

ISSN

0897-4756

Publication Date

November 13, 2018

Volume

30

Issue

21

Start / End Page

7962 / 7969

Related Subject Headings

  • Materials
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences
 

Citation

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Zheng, Q., Schreiber, N. J., Zheng, H., Yan, J., McGuire, M. A., Mitchell, J. F., … Sales, B. C. (2018). Real Space Visualization of Competing Phases in La0.6Sr2.4Mn2O7 Single Crystals. Chemistry of Materials, 30(21), 7962–7969. https://doi.org/10.1021/acs.chemmater.8b03589
Zheng, Q., N. J. Schreiber, H. Zheng, J. Yan, M. A. McGuire, J. F. Mitchell, M. Chi, and B. C. Sales. “Real Space Visualization of Competing Phases in La0.6Sr2.4Mn2O7 Single Crystals.” Chemistry of Materials 30, no. 21 (November 13, 2018): 7962–69. https://doi.org/10.1021/acs.chemmater.8b03589.
Zheng Q, Schreiber NJ, Zheng H, Yan J, McGuire MA, Mitchell JF, et al. Real Space Visualization of Competing Phases in La0.6Sr2.4Mn2O7 Single Crystals. Chemistry of Materials. 2018 Nov 13;30(21):7962–9.
Zheng, Q., et al. “Real Space Visualization of Competing Phases in La0.6Sr2.4Mn2O7 Single Crystals.” Chemistry of Materials, vol. 30, no. 21, Nov. 2018, pp. 7962–69. Scopus, doi:10.1021/acs.chemmater.8b03589.
Zheng Q, Schreiber NJ, Zheng H, Yan J, McGuire MA, Mitchell JF, Chi M, Sales BC. Real Space Visualization of Competing Phases in La0.6Sr2.4Mn2O7 Single Crystals. Chemistry of Materials. 2018 Nov 13;30(21):7962–7969.
Journal cover image

Published In

Chemistry of Materials

DOI

EISSN

1520-5002

ISSN

0897-4756

Publication Date

November 13, 2018

Volume

30

Issue

21

Start / End Page

7962 / 7969

Related Subject Headings

  • Materials
  • 40 Engineering
  • 34 Chemical sciences
  • 09 Engineering
  • 03 Chemical Sciences