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том 121 издание 6 номер публикации 067202

Pauling Entropy, Metastability, and Equilibrium in Dy2Ti2O7 Spin Ice

S R Giblin 1
Sean Giblin 1
M Twengström 2
M. Twengström 2
L Bovo 3, 4
L. Bovo 3, 4
M Ruminy 5
M. BARTKOWIAK 5
Marek Bartkowiak 5
P. Manuel 6
J. C. Andresen 7
D. Prabhakaran 8
G Balakrishnan 9
G. Balakrishnan 9
E Pomjakushina 10
Ekaterina Pomjakushina 10
C. Paulsen 11
E. Lhotel 11
L. Keller 5
L. P. Keller 5
M Frontzek 12
Matthias Frontzek 12
S. C. Capelli 6
O. ZAHARKO 5
Oksana Zaharko 5
P. A. McClarty 13
S. T. Bramwell 3
STEVEN T. BRAMWELL 3
P. Henelius 2
T Fennell 5
Tom Fennell 5
Тип публикацииJournal Article
Дата публикации2018-08-07
scimago Q1
wos Q1
БС1
SJR2.856
CiteScore15.6
Impact factor9.0
ISSN00319007, 10797114
General Physics and Astronomy
Краткое описание
Determining the fate of the Pauling entropy in the classical spin ice material Dy$_2$Ti$_2$O$_7$ with respect to the third law of thermodynamics has become an important test case for understanding the existence and stability of ice-rule states in general. The standard model of spin ice - the dipolar spin ice model - predicts an ordering transition at $T\approx 0.15$ K, but recent experiments by Pomaranski $et\ al.$ suggest an entropy recovery over long time scales at temperatures as high as $0.5$ K, much too high to be compatible with theory. Using neutron scattering and specific heat measurements at low temperatures and with long time scales ($0.35$ K$/10^6$ s and $0.5$ K$/10^5$ s respectively) on several isotopically enriched samples we find no evidence of a reduction of ice-rule correlations or spin entropy. High-resolution simulations of the neutron structure factor show that the spin correlations remain well described by the dipolar spin ice model at all temperatures. Further, by careful consideration of hyperfine contributions, we conclude that the original entropy measurements of Ramirez $et\ al.$ are, after all, essentially correct: the short-time relaxation method used in that study gives a reasonably accurate estimate of the equilibrium spin ice entropy due to a cancellation of contributions.
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Giblin S. R. et al. Pauling Entropy, Metastability, and Equilibrium in Dy2Ti2O7 Spin Ice // Physical Review Letters. 2018. Vol. 121. No. 6. 067202
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Giblin S. R., Giblin S., Twengström M., Twengström M., Bovo L., Bovo L., Ruminy M., BARTKOWIAK M., Bartkowiak M., Manuel P., Andresen J., Prabhakaran D., Balakrishnan G., Balakrishnan G., Pomjakushina E., Pomjakushina E., Paulsen C., Lhotel E., Keller L., Keller L. P., Frontzek M., Frontzek M., Capelli S. C., ZAHARKO O., Zaharko O., McClarty P. A., Bramwell S. T., BRAMWELL S. T., Henelius P., Fennell T., Fennell T. Pauling Entropy, Metastability, and Equilibrium in Dy2Ti2O7 Spin Ice // Physical Review Letters. 2018. Vol. 121. No. 6. 067202
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TY - JOUR
DO - 10.1103/physrevlett.121.067202
UR - https://doi.org/10.1103/physrevlett.121.067202
TI - Pauling Entropy, Metastability, and Equilibrium in Dy2Ti2O7 Spin Ice
T2 - Physical Review Letters
AU - Giblin, S R
AU - Giblin, Sean
AU - Twengström, M
AU - Twengström, M.
AU - Bovo, L
AU - Bovo, L.
AU - Ruminy, M
AU - BARTKOWIAK, M.
AU - Bartkowiak, Marek
AU - Manuel, P.
AU - Andresen, J. C.
AU - Prabhakaran, D.
AU - Balakrishnan, G
AU - Balakrishnan, G.
AU - Pomjakushina, E
AU - Pomjakushina, Ekaterina
AU - Paulsen, C.
AU - Lhotel, E.
AU - Keller, L.
AU - Keller, L. P.
AU - Frontzek, M
AU - Frontzek, Matthias
AU - Capelli, S. C.
AU - ZAHARKO, O.
AU - Zaharko, Oksana
AU - McClarty, P. A.
AU - Bramwell, S. T.
AU - BRAMWELL, STEVEN T.
AU - Henelius, P.
AU - Fennell, T
AU - Fennell, Tom
PY - 2018
DA - 2018/08/07
PB - American Physical Society (APS)
IS - 6
VL - 121
PMID - 30141658
SN - 0031-9007
SN - 1079-7114
ER -
BibTex
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@article{2018_Giblin,
author = {S R Giblin and Sean Giblin and M Twengström and M. Twengström and L Bovo and L. Bovo and M Ruminy and M. BARTKOWIAK and Marek Bartkowiak and P. Manuel and J. C. Andresen and D. Prabhakaran and G Balakrishnan and G. Balakrishnan and E Pomjakushina and Ekaterina Pomjakushina and C. Paulsen and E. Lhotel and L. Keller and L. P. Keller and M Frontzek and Matthias Frontzek and S. C. Capelli and O. ZAHARKO and Oksana Zaharko and P. A. McClarty and S. T. Bramwell and STEVEN T. BRAMWELL and P. Henelius and T Fennell and Tom Fennell},
title = {Pauling Entropy, Metastability, and Equilibrium in Dy2Ti2O7 Spin Ice},
journal = {Physical Review Letters},
year = {2018},
volume = {121},
publisher = {American Physical Society (APS)},
month = {aug},
url = {https://doi.org/10.1103/physrevlett.121.067202},
number = {6},
pages = {067202},
doi = {10.1103/physrevlett.121.067202}
}