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Title: Antiferromagnetism and hidden order in isoelectronic doping of URu2Si2

Abstract

In this paper, we present muon spin rotation (mu SR) and susceptibility measurements on single crystals of isoelectronically doped URu2-xTxSi2 (T = Fe, Os) for doping levels up to 50%. Zero field (ZF) μ SR measurements show long-lived oscillations demonstrating that an antiferromagnetic state exists down to low doping levels for both Os and Fe dopants. The measurements further show an increase in the internal field with doping for both Fe and Os. Comparison of the local moment-hybridization crossover temperature from susceptibility measurements and our magnetic transition temperature shows that changes in hybridization, rather than solely chemical pressure, are important in driving the evolution of magnetic order with doping.

Authors:
 [1];  [2];  [1];  [1];  [1];  [1];  [3];  [3];  [3];  [3];  [4]
  1. McMaster Univ., Hamilton, ON (Canada)
  2. Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
  3. Columbia Univ., New York, NY (United States)
  4. McMaster Univ., Hamilton, ON (Canada); Canadian Institute for Advanced Research, Toronto, Ontario (Canada)
Publication Date:
Research Org.:
Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)
Sponsoring Org.:
USDOE
OSTI Identifier:
1271888
Alternate Identifier(s):
OSTI ID: 1236546
Grant/Contract Number:  
AC05-00OR22725
Resource Type:
Accepted Manuscript
Journal Name:
Physical Review B
Additional Journal Information:
Journal Volume: 93; Journal Issue: 6; Journal ID: ISSN 2469-9950
Publisher:
American Physical Society (APS)
Country of Publication:
United States
Language:
English
Subject:
36 MATERIALS SCIENCE; 75 CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY

Citation Formats

Wilson, Murray N., Williams, Travis J., Cai, Yipeng, Hallas, Alannah M., Medina, Teresa, Munsie, Timothy J., Cheung, Sky C., Frandsen, Benjamin A., Liu, Lian, Uemura, Yasutomo J., and Luke, Graeme M. Antiferromagnetism and hidden order in isoelectronic doping of URu2Si2. United States: N. p., 2016. Web. doi:10.1103/PhysRevB.93.064402.
Wilson, Murray N., Williams, Travis J., Cai, Yipeng, Hallas, Alannah M., Medina, Teresa, Munsie, Timothy J., Cheung, Sky C., Frandsen, Benjamin A., Liu, Lian, Uemura, Yasutomo J., & Luke, Graeme M. Antiferromagnetism and hidden order in isoelectronic doping of URu2Si2. United States. https://doi.org/10.1103/PhysRevB.93.064402
Wilson, Murray N., Williams, Travis J., Cai, Yipeng, Hallas, Alannah M., Medina, Teresa, Munsie, Timothy J., Cheung, Sky C., Frandsen, Benjamin A., Liu, Lian, Uemura, Yasutomo J., and Luke, Graeme M. Mon . "Antiferromagnetism and hidden order in isoelectronic doping of URu2Si2". United States. https://doi.org/10.1103/PhysRevB.93.064402. https://www.osti.gov/servlets/purl/1271888.
@article{osti_1271888,
title = {Antiferromagnetism and hidden order in isoelectronic doping of URu2Si2},
author = {Wilson, Murray N. and Williams, Travis J. and Cai, Yipeng and Hallas, Alannah M. and Medina, Teresa and Munsie, Timothy J. and Cheung, Sky C. and Frandsen, Benjamin A. and Liu, Lian and Uemura, Yasutomo J. and Luke, Graeme M.},
abstractNote = {In this paper, we present muon spin rotation (mu SR) and susceptibility measurements on single crystals of isoelectronically doped URu2-xTxSi2 (T = Fe, Os) for doping levels up to 50%. Zero field (ZF) μ SR measurements show long-lived oscillations demonstrating that an antiferromagnetic state exists down to low doping levels for both Os and Fe dopants. The measurements further show an increase in the internal field with doping for both Fe and Os. Comparison of the local moment-hybridization crossover temperature from susceptibility measurements and our magnetic transition temperature shows that changes in hybridization, rather than solely chemical pressure, are important in driving the evolution of magnetic order with doping.},
doi = {10.1103/PhysRevB.93.064402},
journal = {Physical Review B},
number = 6,
volume = 93,
place = {United States},
year = {Mon Feb 01 00:00:00 EST 2016},
month = {Mon Feb 01 00:00:00 EST 2016}
}

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Cited by: 14 works
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Works referencing / citing this record:

High magnetic field behavior of strongly correlated uranium-based compounds
journal, October 2017