A pressure-induced topological quantum phase transition has been theoretically predicted for the semiconductor bismuth tellurohalide BiTeI with giant Rashba spin splitting. In this work, evolution of the electrical transport properties in BiTeI and BiTeBr is investigated under high pressure. The pressure-dependent resistivity in a wide temperature range passes through a minimum at around 3 GPa, indicating the predicted topological quantum phase transition in BiTeI. Superconductivity is observed in both BiTeI and BiTeBr, while resistivity at higher temperatures still exhibits semiconducting behavior. Theoretical calculations suggest that superconductivity may develop from the multivalley semiconductor phase. The superconducting transition te...
Topological superconductivity is one of most fascinating properties of topological quantum matters t...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
A pressure-induced topological quantum phase transition has been theoretically predicted for the sem...
A pressure-induced topological quantum phase transition has been theoretically predicted for the sem...
We study the possibility of pressure-induced transitions from a normal semiconductor to a topologica...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Compresed BiTeBr has been studied from a joint experimental and theoretical perspective. Room-temper...
Compresed BiTeBr has been studied from a joint experimental and theoretical perspective. Room-temper...
Westudy the possibility of pressure-induced transitions from a normal semiconductor to a topological...
The coexistence of superconductivity and topology holds the potential to realize exotic quantum stat...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
Topological superconductivity is one of most fascinating properties of topological quantum matters t...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
A pressure-induced topological quantum phase transition has been theoretically predicted for the sem...
A pressure-induced topological quantum phase transition has been theoretically predicted for the sem...
We study the possibility of pressure-induced transitions from a normal semiconductor to a topologica...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Compresed BiTeBr has been studied from a joint experimental and theoretical perspective. Room-temper...
Compresed BiTeBr has been studied from a joint experimental and theoretical perspective. Room-temper...
Westudy the possibility of pressure-induced transitions from a normal semiconductor to a topological...
The coexistence of superconductivity and topology holds the potential to realize exotic quantum stat...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...
Topological superconductivity is one of most fascinating properties of topological quantum matters t...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Being a giant bulk Rashba semiconductor, the ambient-pressure phase of BiTeI was predicted to transf...