Synthesis, crystal growth and characterization of the pyrochlore Er2Ti2O7
Author:
Affiliation:
1. Institute for Quantum Matter
2. Department of Physics and Astronomy
3. Johns Hopkins University
4. Baltimore
5. USA
Abstract
A stoichiometric and high crystalline quality Er2Ti2O7 single crystal was successfully grown using the traveling solvent floating zone technique for the first time.
Funder
U.S. Department of Energy
Gordon and Betty Moore Foundation
China Scholarship Council
Publisher
Royal Society of Chemistry (RSC)
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Link
http://pubs.rsc.org/en/content/articlepdf/2019/CE/C8CE01885E
Reference48 articles.
1. Spin Correlations inHo2Ti2O7: A Dipolar Spin Ice System
2. Pyrochlore Antiferromagnet: A Three-Dimensional Quantum Spin Liquid
3. Er2Ti2O7:Evidence of quantum order by disorder in a frustrated antiferromagnet
4. Phase Competition in the Palmer-Chalker XY Pyrochlore Er2Pt2O7
5. Antiferromagnetic order in the pyrochloresR2Ge2O7 (R=Er,Yb)
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1. Monte Carlo study of finite-temperature transition in R2(R = Yb and Er)M2(M = Ti and Sn)O7 anisotropic pyrochlore;Journal of the Korean Ceramic Society;2024-01-03
2. Quantum paramagnetism in a non-Kramers rare-earth oxide: Monoclinic Pr2Ti2O7;Physical Review Materials;2023-06-16
3. In-situ crystallization of lanthanide titanate stannate (Ln2TiSnO7) pyrochlore in glass: A glass-ceramic system for potential nuclear waste sequestration;Journal of Nuclear Materials;2023-04
4. Measurements of the Heat Capacity of Erbium Titanate Er2Ti2O7;Journal of Chemical & Engineering Data;2022-08-18
5. Stable growth of (Ce,Gd)3Ga2Al3O12 crystal scintillators by the traveling solvent floating zone method;CrystEngComm;2022
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