dorsal/arxiv
View SchemaGrowth and hydrostatic-pressure study of a type-II superconductor Bi$_2$Ta$_3$S$_6$ single crystal
| Authors | Li Chenglin, Yang Yaling, Yang Zhilong, Deng Junze, Zhang Ruihan, Chen Weiwei, Pan Yue, Wang Yulong, Wang Xuhui, Wang Bosen, Wang Zhijun, Wang Gang |
|---|---|
| Categories | |
| ArXiv ID | 2601.10195vv1 |
| URL | https://arxiv.org/abs/2601.10195 |
| License | http://arxiv.org/licenses/nonexclusive-distrib/1.0/ |
Abstract
We report the growth and physical properties of single-crystalline Bi$_2$Ta$_3$S$_6$ crystallizing in $P6_3/mcm$ space group, which comprises alternating Ta-S layers and Bi layers with each Bi atom connected with adjacent S atoms. Temperature-dependent electrical resistivity measurements reveal a superconducting transition at 0.84 K, with upper critical field 231 Oe under an out-of-plane magnetic field. The magnetization measurements confirm its nature as a type-II superconductor, with anisotropic Ginzburg-Landau parameter $\kappa_{ab}$ = 7.67 and $\kappa_c$ = 4.50. Hall measurements indicate the dominant carriers as hole. Hydrostatic pressure is applied, under which both the superconducting transition temperature and upper critical field increase sharply under low pressure before undergoing slight suppression under higher pressure. Density functional theory calculations reveal non-trivial topological surface states on (100) surface in Bi$_2$Ta$_3$S$_6$, which may offer a new avenue for exploring potential topological superconductivity in layered transition metal dichalcogenides.
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"abstract": "We report the growth and physical properties of single-crystalline Bi$_2$Ta$_3$S$_6$ crystallizing in $P6_3/mcm$ space group, which comprises alternating Ta-S layers and Bi layers with each Bi atom connected with adjacent S atoms. Temperature-dependent electrical resistivity measurements reveal a superconducting transition at 0.84 K, with upper critical field 231 Oe under an out-of-plane magnetic field. The magnetization measurements confirm its nature as a type-II superconductor, with anisotropic Ginzburg-Landau parameter $\\kappa_{ab}$ = 7.67 and $\\kappa_c$ = 4.50. Hall measurements indicate the dominant carriers as hole. Hydrostatic pressure is applied, under which both the superconducting transition temperature and upper critical field increase sharply under low pressure before undergoing slight suppression under higher pressure. Density functional theory calculations reveal non-trivial topological surface states on (100) surface in Bi$_2$Ta$_3$S$_6$, which may offer a new avenue for exploring potential topological superconductivity in layered transition metal dichalcogenides.",
"arxiv_id": "2601.10195",
"authors": [
"Li Chenglin",
"Yang Yaling",
"Yang Zhilong",
"Deng Junze",
"Zhang Ruihan",
"Chen Weiwei",
"Pan Yue",
"Wang Yulong",
"Wang Xuhui",
"Wang Bosen",
"Wang Zhijun",
"Wang Gang"
],
"categories": [
"cond-mat.supr-con"
],
"license": "http://arxiv.org/licenses/nonexclusive-distrib/1.0/",
"title": "Growth and hydrostatic-pressure study of a type-II superconductor Bi$_2$Ta$_3$S$_6$ single crystal",
"url": "https://arxiv.org/abs/2601.10195",
"version": "v1"
},
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"variant": "snapshot-2026-01-17",
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