Extended Kohler's Rule of Magnetoresistance in TaCo$_2$Te$_2$
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arXiv
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| Autori principali: | , , , , , , , , , , |
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| Natura: | Preprint |
| Pubblicazione: |
2023
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| _version_ | 1866916093191258112 |
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| author | Pate, Samuel Chen, Bowen Shen, Bing Li, Kezhen Zhou, Xiuquan Chung, Duck Young Divan, Ralu Kanatzidis, Mercouri G. Welp, Ulrich Kwok, Wai-Kwong Xiao, Zhi-Li |
| author_facet | Pate, Samuel Chen, Bowen Shen, Bing Li, Kezhen Zhou, Xiuquan Chung, Duck Young Divan, Ralu Kanatzidis, Mercouri G. Welp, Ulrich Kwok, Wai-Kwong Xiao, Zhi-Li |
| contents | TaCo$_2$Te$_2$ is recently reported to be an air-stable, high mobility Van der Waals material with probable magnetic order. Here we investigate the scaling behavior of its magnetoresistance. We measured both the longitudinal ($ρ_{xx}$) and Hall ($ρ_{xy}$) magnetoresistivities of TaCo$_2$Te$_2$ crystals in magnetic fields parallel to the c-axis and found that the magnetoresistance violates the Kohler's rule $MR \sim f[H/ρ_0]$ while obeying the extended Kohler's rule $MR \sim f[H/(n_Tρ_0)]$, where $MR \sim [ρ_{xx}(H)-ρ_0]/ρ_0$, $H$ is the magnetic field, $n_T$ is a thermal factor, $ρ_{xx}(H)$ and $ρ_0$ are the resistivities at $H$ and zero field, respectively. While deviating from those of the densities of electrons ($n_e$) and holes ($n_h$) obtained from the two-band model analysis of the magnetoconductivities, the temperature dependence of $n_T$ is close to that of the Hall carrier densities $n_H$ calculated from the slopes of $ρ_{xy}(H)$ curves at low magnetic fields, providing a new way to obtain the thermal factor in the extended Kohler's rule. |
| format | Preprint |
| id |
arxiv_https___arxiv_org_abs_2312_05624 |
| institution | arXiv |
| publishDate | 2023 |
| record_format | arxiv |
| spellingShingle | Extended Kohler's Rule of Magnetoresistance in TaCo$_2$Te$_2$ Pate, Samuel Chen, Bowen Shen, Bing Li, Kezhen Zhou, Xiuquan Chung, Duck Young Divan, Ralu Kanatzidis, Mercouri G. Welp, Ulrich Kwok, Wai-Kwong Xiao, Zhi-Li Materials Science TaCo$_2$Te$_2$ is recently reported to be an air-stable, high mobility Van der Waals material with probable magnetic order. Here we investigate the scaling behavior of its magnetoresistance. We measured both the longitudinal ($ρ_{xx}$) and Hall ($ρ_{xy}$) magnetoresistivities of TaCo$_2$Te$_2$ crystals in magnetic fields parallel to the c-axis and found that the magnetoresistance violates the Kohler's rule $MR \sim f[H/ρ_0]$ while obeying the extended Kohler's rule $MR \sim f[H/(n_Tρ_0)]$, where $MR \sim [ρ_{xx}(H)-ρ_0]/ρ_0$, $H$ is the magnetic field, $n_T$ is a thermal factor, $ρ_{xx}(H)$ and $ρ_0$ are the resistivities at $H$ and zero field, respectively. While deviating from those of the densities of electrons ($n_e$) and holes ($n_h$) obtained from the two-band model analysis of the magnetoconductivities, the temperature dependence of $n_T$ is close to that of the Hall carrier densities $n_H$ calculated from the slopes of $ρ_{xy}(H)$ curves at low magnetic fields, providing a new way to obtain the thermal factor in the extended Kohler's rule. |
| title | Extended Kohler's Rule of Magnetoresistance in TaCo$_2$Te$_2$ |
| topic | Materials Science |
| url | https://arxiv.org/abs/2312.05624 |