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Magnetic properties of iron-doped Bi2Se3, a topological insulator. / Shevchenko, E. V. ; Khachatryan, A. Sh. ; Antonenko, A. O. ; Charnaya, E. V. ; Naumov, S. V. ; Marchenkov, V. V. ; Chistyakov, V. V. ; Lee, M. K.; Chang, L.-J.

In: Physics of the Solid State, Vol. 61, No. 6, 2019, p. 1037-1042 .

Research output: Contribution to journalArticlepeer-review

Harvard

Shevchenko, EV, Khachatryan, AS, Antonenko, AO, Charnaya, EV, Naumov, SV, Marchenkov, VV, Chistyakov, VV, Lee, MK & Chang, L-J 2019, 'Magnetic properties of iron-doped Bi2Se3, a topological insulator', Physics of the Solid State, vol. 61, no. 6, pp. 1037-1042 . https://doi.org/10.1134/S1063783419060234

APA

Shevchenko, E. V., Khachatryan, A. S., Antonenko, A. O., Charnaya, E. V., Naumov, S. V., Marchenkov, V. V., Chistyakov, V. V., Lee, M. K., & Chang, L-J. (2019). Magnetic properties of iron-doped Bi2Se3, a topological insulator. Physics of the Solid State, 61(6), 1037-1042 . https://doi.org/10.1134/S1063783419060234

Vancouver

Shevchenko EV, Khachatryan AS, Antonenko AO, Charnaya EV, Naumov SV, Marchenkov VV et al. Magnetic properties of iron-doped Bi2Se3, a topological insulator. Physics of the Solid State. 2019;61(6):1037-1042 . https://doi.org/10.1134/S1063783419060234

Author

Shevchenko, E. V. ; Khachatryan, A. Sh. ; Antonenko, A. O. ; Charnaya, E. V. ; Naumov, S. V. ; Marchenkov, V. V. ; Chistyakov, V. V. ; Lee, M. K. ; Chang, L.-J. / Magnetic properties of iron-doped Bi2Se3, a topological insulator. In: Physics of the Solid State. 2019 ; Vol. 61, No. 6. pp. 1037-1042 .

BibTeX

@article{42c2bff518c84a67b5433fe8a76b286f,
title = "Magnetic properties of iron-doped Bi2Se3, a topological insulator",
abstract = "We study the dc magnetization of a Bi 1.94Fe 0.06Se 3 single crystal in the temperature range of 1.9 to 400 K in applied magnetic fields up to 70 kOe for two sample orientations in the applied field. We register three magnetic phase transitions and observe considerable anisotropy of the magnetic properties. The coercive force varies with temperature in a nonmonotonic manner. For the sample in a paramagnetic state, we estimate its magnetic moment per iron atom; its Curie–Weiss temperature is found to be negative. Arrot–Belov plots are constructed. ",
author = "Shevchenko, {E. V.} and Khachatryan, {A. Sh.} and Antonenko, {A. O.} and Charnaya, {E. V.} and Naumov, {S. V.} and Marchenkov, {V. V.} and Chistyakov, {V. V.} and Lee, {M. K.} and L.-J. Chang",
note = "Shevchenko, E.V., Khachatryan, A.S., Antonenko, A.O. et al. Magnetic Properties of Iron-Doped Bi2Se3, a Topological Insulator. Phys. Solid State 61, 1037–1042 (2019). https://doi.org/10.1134/S1063783419060234",
year = "2019",
doi = "10.1134/S1063783419060234",
language = "English",
volume = "61",
pages = "1037--1042 ",
journal = "Physics of the Solid State",
issn = "1063-7834",
publisher = "МАИК {"}Наука/Интерпериодика{"}",
number = "6",

}

RIS

TY - JOUR

T1 - Magnetic properties of iron-doped Bi2Se3, a topological insulator

AU - Shevchenko, E. V.

AU - Khachatryan, A. Sh.

AU - Antonenko, A. O.

AU - Charnaya, E. V.

AU - Naumov, S. V.

AU - Marchenkov, V. V.

AU - Chistyakov, V. V.

AU - Lee, M. K.

AU - Chang, L.-J.

N1 - Shevchenko, E.V., Khachatryan, A.S., Antonenko, A.O. et al. Magnetic Properties of Iron-Doped Bi2Se3, a Topological Insulator. Phys. Solid State 61, 1037–1042 (2019). https://doi.org/10.1134/S1063783419060234

PY - 2019

Y1 - 2019

N2 - We study the dc magnetization of a Bi 1.94Fe 0.06Se 3 single crystal in the temperature range of 1.9 to 400 K in applied magnetic fields up to 70 kOe for two sample orientations in the applied field. We register three magnetic phase transitions and observe considerable anisotropy of the magnetic properties. The coercive force varies with temperature in a nonmonotonic manner. For the sample in a paramagnetic state, we estimate its magnetic moment per iron atom; its Curie–Weiss temperature is found to be negative. Arrot–Belov plots are constructed.

AB - We study the dc magnetization of a Bi 1.94Fe 0.06Se 3 single crystal in the temperature range of 1.9 to 400 K in applied magnetic fields up to 70 kOe for two sample orientations in the applied field. We register three magnetic phase transitions and observe considerable anisotropy of the magnetic properties. The coercive force varies with temperature in a nonmonotonic manner. For the sample in a paramagnetic state, we estimate its magnetic moment per iron atom; its Curie–Weiss temperature is found to be negative. Arrot–Belov plots are constructed.

UR - http://www.scopus.com/inward/record.url?scp=85067579439&partnerID=8YFLogxK

U2 - 10.1134/S1063783419060234

DO - 10.1134/S1063783419060234

M3 - Article

VL - 61

SP - 1037

EP - 1042

JO - Physics of the Solid State

JF - Physics of the Solid State

SN - 1063-7834

IS - 6

ER -

ID: 42946409