Coincident structural and magnetic order in revealed by high-resolution neutron diffraction
Abstract
We present neutron dffraction analysis of BaFe2(As1-xPx)2 over a wide temperature (10 to 300 K) and compositional (0.11 < x < 0.79) range, including the normal state, the magnetically ordered state, and the superconducting state. The paramagnetic to spin-density wave and orthorhombic to tetragonal transitions are first order and coincident within the sensitivity of our measurements (~ 0:5 K). Extrapolation of the orthorhombic order parameter down to zero suggests that structural quantum criticality cannot exist at compositions higher than x = 0.28, which is much lower than values determined using other methods, but in good agreement with our observations of the actual phase stability range. Lastly, the onset of spin-density wave order shows a stronger structural anomaly than the charge-doped system in the form of an enhancement of the c/a ratio below the transition.
- Authors:
-
- Argonne National Lab. (ANL), Argonne, IL (United States). Materials Science Division
- Argonne National Lab. (ANL), Argonne, IL (United States). Materials Science Division; Northern Illinois Univ., DeKalb, IL (United States). Dept. of Physics
- Argonne National Lab. (ANL), Argonne, IL (United States). Materials Science Division; Afyon Kocatepe Univ., Afyon (Turkey). Dept. of Materials Science and Engineering
- Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States). Quantum Condensed Matter Division
- Argonne National Lab. (ANL), Argonne, IL (United States). Materials Science Division; Northwestern Univ., Evanston, IL (United States). Dept. of Chemistry
- Publication Date:
- Research Org.:
- Argonne National Laboratory (ANL), Argonne, IL (United States)
- Sponsoring Org.:
- USDOE Office of Science (SC), Basic Energy Sciences (BES)
- OSTI Identifier:
- 1396243
- Alternate Identifier(s):
- OSTI ID: 1180436
- Grant/Contract Number:
- AC02-06CH11357
- Resource Type:
- Accepted Manuscript
- Journal Name:
- Physical Review. B, Condensed Matter and Materials Physics
- Additional Journal Information:
- Journal Volume: 90; Journal Issue: 10; Journal ID: ISSN 1098-0121
- Publisher:
- American Physical Society (APS)
- Country of Publication:
- United States
- Language:
- English
- Subject:
- 75 CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY
Citation Formats
Allred, J. M., Taddei, K. M., Bugaris, D. E., Avci, S., Chung, D. Y., Claus, H., dela Cruz, C., Kanatzidis, M. G., Rosenkranz, S., Osborn, R., and Chmaissem, O. Coincident structural and magnetic order in BaFe2(As1-xPx)2 revealed by high-resolution neutron diffraction. United States: N. p., 2014.
Web. doi:10.1103/PhysRevB.90.104513.
Allred, J. M., Taddei, K. M., Bugaris, D. E., Avci, S., Chung, D. Y., Claus, H., dela Cruz, C., Kanatzidis, M. G., Rosenkranz, S., Osborn, R., & Chmaissem, O. Coincident structural and magnetic order in BaFe2(As1-xPx)2 revealed by high-resolution neutron diffraction. United States. https://doi.org/10.1103/PhysRevB.90.104513
Allred, J. M., Taddei, K. M., Bugaris, D. E., Avci, S., Chung, D. Y., Claus, H., dela Cruz, C., Kanatzidis, M. G., Rosenkranz, S., Osborn, R., and Chmaissem, O. Fri .
"Coincident structural and magnetic order in BaFe2(As1-xPx)2 revealed by high-resolution neutron diffraction". United States. https://doi.org/10.1103/PhysRevB.90.104513. https://www.osti.gov/servlets/purl/1396243.
@article{osti_1396243,
title = {Coincident structural and magnetic order in BaFe2(As1-xPx)2 revealed by high-resolution neutron diffraction},
author = {Allred, J. M. and Taddei, K. M. and Bugaris, D. E. and Avci, S. and Chung, D. Y. and Claus, H. and dela Cruz, C. and Kanatzidis, M. G. and Rosenkranz, S. and Osborn, R. and Chmaissem, O.},
abstractNote = {We present neutron dffraction analysis of BaFe2(As1-xPx)2 over a wide temperature (10 to 300 K) and compositional (0.11 < x < 0.79) range, including the normal state, the magnetically ordered state, and the superconducting state. The paramagnetic to spin-density wave and orthorhombic to tetragonal transitions are first order and coincident within the sensitivity of our measurements (~ 0:5 K). Extrapolation of the orthorhombic order parameter down to zero suggests that structural quantum criticality cannot exist at compositions higher than x = 0.28, which is much lower than values determined using other methods, but in good agreement with our observations of the actual phase stability range. Lastly, the onset of spin-density wave order shows a stronger structural anomaly than the charge-doped system in the form of an enhancement of the c/a ratio below the transition.},
doi = {10.1103/PhysRevB.90.104513},
journal = {Physical Review. B, Condensed Matter and Materials Physics},
number = 10,
volume = 90,
place = {United States},
year = {Fri Sep 19 00:00:00 EDT 2014},
month = {Fri Sep 19 00:00:00 EDT 2014}
}
Web of Science
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