Topological insulators, a new quantum state of matter, create exciting opportunities for studying topological quantum physics and for exploring spintronic applications due to their gapless helical metallic surface states. Here, we report the observation of weak anti-localization and quantum oscillations originated from surface states in Bi2Se2Te crystals. Angle-resolved photoemission spectroscopy measurements on cleaved Bi2Se2Te crystals show a well-defined linear dispersion without intersection of the conduction band. The measured weak anti-localization effect agrees well with the Hikami-Larkin-Nagaoka model and the extracted phase coherent length shows a power-law dependence with temperature (l(phi) similar to T-0.44), indicating the pres...
We report the observation of prominent Shubnikovde Haas oscillations in a Topological Insulator, Bi2...
We report a high-field magnetotransport study on selected low-carrier crystals of the topological in...
The topological insulators Bi2Se3 and Bi2Te2Se have been shown to possess unoccupied topological sur...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators are insulating materials that display massless, Dirac-like surface states in ...
Topological insulators represent unusual phases of quantum matter with an insulating bulk gap and ga...
Topological insulators are materials that have a bulk band gap similar to commonly known insulators,...
Surface states consisting of helical Dirac fermions have been extensively studied in threedimensiona...
Surface states consisting of helical Dirac fermions have been extensively studied in threedimensiona...
The present work describes the magnetotransport studies of topological-surface state (SS) in metalli...
Contains fulltext : 166146.pdf (preprint version ) (Open Access
We report the observation of prominent Shubnikovde Haas oscillations in a Topological Insulator, Bi2...
We report a high-field magnetotransport study on selected low-carrier crystals of the topological in...
The topological insulators Bi2Se3 and Bi2Te2Se have been shown to possess unoccupied topological sur...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators, a new quantum state of matter, create exciting opportunities for studying to...
Topological insulators are insulating materials that display massless, Dirac-like surface states in ...
Topological insulators represent unusual phases of quantum matter with an insulating bulk gap and ga...
Topological insulators are materials that have a bulk band gap similar to commonly known insulators,...
Surface states consisting of helical Dirac fermions have been extensively studied in threedimensiona...
Surface states consisting of helical Dirac fermions have been extensively studied in threedimensiona...
The present work describes the magnetotransport studies of topological-surface state (SS) in metalli...
Contains fulltext : 166146.pdf (preprint version ) (Open Access
We report the observation of prominent Shubnikovde Haas oscillations in a Topological Insulator, Bi2...
We report a high-field magnetotransport study on selected low-carrier crystals of the topological in...
The topological insulators Bi2Se3 and Bi2Te2Se have been shown to possess unoccupied topological sur...