Colossal Magnetoresistance and Heavy Fermions in Eu0.9Yb0.1B6 System

Current work presents the study of transport characteristics [resistivity, transverse magnetoresistance (TMR), Hall effect] of a high-quality polycrystalline sample of Eu0.9Yb0.1B6 compound in the temperature range of 2–300 K, in magnetic fields up to 8 T. The obtained data confirm the realization in Eu0.9Yb0.1B6 of a state with electronic and magnetic phase separation (EMPS), which is typical for parent europium hexaboride. For EMPS the “metallization” of the system (TM ≈ 15 K) precedes ferromagnetic (FM) ordering (TC ≈ 11.4 K). In the temperature range TC−TM, the enhancement of the colossal magnetoresistance (CMR) effect was detected. It was registered that a maximum value of –∆ρ/ρ ≈ 89% is achieved at TM point. The analysis performed allows estimating the effective mass of the electrons as $${{m}_{e}}{\text{*}}$$ ≈ 0.9–20m0, which confirms the formation of heavy fermions in the paramagnetic (PM) phase of Eu0.9Yb0.1B6. To explain mentioned effects the polaronic scenario is proposed.

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Publication Details

Journal
Physics of the Solid State
Published
2026-09-24
DOI
https://doi.org/10.1134/s1063783426601347
Primary Topic
Rare-earth and actinide compounds
Type
article
Field-Weighted Citation Impact
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article

Colossal Magnetoresistance and Heavy Fermions in Eu0.9Yb0.1B6 System

M. A. Anisimov, В. В. Воронов, V. V. Ġlushkov, Alexey V. Bogach
Physics of the Solid State
Rare-earth and actinide compounds
article

Colossal Magnetoresistance and Heavy Fermions in Eu0.9Yb0.1B6 System

M. A. Anisimov, В. В. Воронов, V. V. Ġlushkov, Alexey V. Bogach
article en

Abstract

Current work presents the study of transport characteristics [resistivity, transverse magnetoresistance (TMR), Hall effect] of a high-quality polycrystalline sample of Eu0.9Yb0.1B6 compound in the temperature range of 2–300 K, in magnetic fields up to 8 T. The obtained data confirm the realization in Eu0.9Yb0.1B6 of a state with electronic and magnetic phase separation (EMPS), which is typical for parent europium hexaboride. For EMPS the “metallization” of the system (TM ≈ 15 K) precedes ferromagnetic (FM) ordering (TC ≈ 11.4 K). In the temperature range TC−TM, the enhancement of the colossal magnetoresistance (CMR) effect was detected. It was registered that a maximum value of –∆ρ/ρ ≈ 89% is achieved at TM point. The analysis performed allows estimating the effective mass of the electrons as $${{m}_{e}}{\text{*}}$$ ≈ 0.9–20m0, which confirms the formation of heavy fermions in the paramagnetic (PM) phase of Eu0.9Yb0.1B6. To explain mentioned effects the polaronic scenario is proposed.

Physics of the Solid StateVol. 68(11)
Institute for High Pressure Physics (RU), Prokhorov General Physics Institute (RU)
Openalex Percentile: Top 18%
Rare-earth and actinide compounds
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Colossal Magnetoresistance and Heavy Fermions in Eu0.9Yb0.1B6 System — M. A. Anisimov, В. В. Воронов, et al. · Physics of the Solid State (2026) | TGRS Research Map | TGRS