Tensile Microstrain Fluctuations in the BaPbO Units in Superconducting BaPb1−xBixO3 by Scanning Dispersive Micro-XANES

Author:

Albertini Ruben1,Macis Salvatore12ORCID,Ivanov Andrei3ORCID,Menushenkov Alexey3,Puri Alessandro4,Monteseguro Virginia5,Joseph Boby6ORCID,Xu Wei17ORCID,Marcelli Augusto18ORCID,Giraldo-Gallo Paula9ORCID,Fisher Ian101112,Bianconi Antonio113ORCID,Campi Gaetano113ORCID

Affiliation:

1. RICMASS Rome International Centre Materials Science Superstripes Via dei Sabelli 119A, 00185 Rome, Italy

2. Department of Physics, Sapienza University Rome, P.le Aldo Moro 2, 00185 Rome, Italy

3. Department of Solid State Physics and Nanostructures, National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), 115409 Moscow, Russia

4. CNR-IOM-OGG c/o ESRF-The European Synchrotron, 71 Avenue des Martyrs, 38000 Grenoble, France

5. Condensed Matter Physics Department, MALTA Consolider Team, Facultad de Ciencias, University of Cantabria, 39005 Santander, Spain

6. Elettra-Sincrotrone Trieste, Basovizza, 34149 Trieste, Italy

7. Institute of High Energy Physics (IHEP), Chinese Academy of Sciences, Beijing 100039, China

8. INFN—Laboratori Nazionali di Frascati, 00044 Frascati, Italy

9. Department of Physics, Universidad de Los Andes, Bogotá 111711, Colombia

10. Department of Applied Physics, Stanford University, Stanford, CA 94305, USA

11. Geballe Laboratory for Advanced Materials, Stanford University, Stanford, CA 94305, USA

12. Stanford Institute for Materials and Energy Sciences, SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA 94025, USA

13. Institute of Crystallography, National Research Council of Italy, Via Salaria Km 29.300, Monterotondo Stazione, 00015 Rome, Italy

Abstract

BaPb1−xBixO3 (BPBO) bismuthate, showing high TC superconductivity for 0.05 < x < 0.35, is an archetypal system for studying the complex inhomogeneity of perovskite lattice favoring the emergence of quantum coherence, called the superstripes phase. Local lattice fluctuations, detected by EXAFS; nanoscale stripes, detected by electron microscopy; and two competing crystalline structures, detected by diffraction, are known to characterize the superconducting phase. At nanoscale [BaBiO3] centered nanoscale units (BBO) coexist with BaPbO3 centered (BPO) units in the BPBO perovskite; therefore, we expect a tensile microstrain in BPO units due the misfit strain between the two different lattices. Here, we report the measurement of the spatial micro-fluctuations of the local tensile microstrain ε in the BaPO units in superconducting Ba(Pb1−xBix)O3 crystals with x1 = 0.19 an x2 = 0.28. We show here the feasibility of applying the scanning dispersive micro-X-ray absorption near edge structure (SdμXANES) technique, using focused synchrotron radiation, to probe the microscale spatial fluctuations of the microstrain in BPO units. This unconventional real-space SdμXANES microscopy at the Pb L3 edge has been collected in the dispersive mode. Our experimental method allows us to measure either the local Bi chemical concentration x and the local lattice microstrain of local BBO and BPO units. The 5 × 5 micron-size spots from the focused X-ray beam allowed us to obtain maps of 1600 points covering an area of 200 × 200 microns. The mapping shows a substantial difference between the spatial fluctuations of the microstrain ε and the chemical inhomogeneity x. Moreover, we show the different relations ε(x) in samples with lower (x1 = 0.19) and higher (x2 = 0.28) doping respect to the optimum doping (x = 0.25).

Funder

Superstripes onlus

National Natural Science Foundation of China

U.S. Department of Energy, Office of Basic Sciences

Publisher

MDPI AG

Subject

Condensed Matter Physics,Electronic, Optical and Magnetic Materials

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