In the prospect of realizing bulk superconductivity in a topological insulator, metal-doped Bi2Se3 has been investigated with increased interest, where the Cu-, Sr-, and Nb-doped systems appear particularly promising. It is generally assumed that metal intercalation into the van der Waals (vdW) gap is responsible for the superconductivity. We have investigated the local structure of Nb in samples with nominal composition Nb0.25Bi2Se3 and Nb0.25Bi1.75Se3 using the X-ray absorption fine structure technique. It is found that that Nb is primarily located in a local environment consistent with that of the misfit layered structure (BiSe)1+δNbSe2, which has a δ-dependent superconducting transition in the same temperature range. We explore the poss...
We study unconventional superconductivity in exfoliated single crystals of a promising three-dimensi...
The discovery of topological superconductivity in doped Bi2Se3 made this class of materials highly i...
AbstractWe report on the growth of high quality single crystals of CuxBi2Se3 with x=0, 0.12 and 0.15...
Topological superconductivity is of great contemporary interest and has been proposed in doped Bi2Se...
The crystal structure, electronic structure, and transport properties of crystals with the nominal c...
Contains fulltext : 234194.pdf (Publisher’s version ) (Open Access
Bi2Se3 is a known topological insulator. When doped with certain metals, this compound becomes super...
Topological insulator Bi2Se3 has shown a number of interesting physical properties. Doping Bi2Se3 wi...
We study unconventional superconductivity in exfoliated single crystals of a promising three-dimensi...
Bi2Se3 is one of a handful of known topological insulators. Here we show that copper intercalation i...
Bi2Se3 is one of a handful of known topological insulators. Here we show that copper intercalation i...
Topological insulators (Tis) are new emerging quantum materials with insulating bulks but conducting...
We show that by Ca doping the Bi2Se3 topological insulator, the Fermi level can be fine tuned to fal...
The topological insulator Bi2Se3 has been known to undergo a superconducting transition at tc=3.8K w...
The discovery of topological superconductivity in doped Bi2Se3 made this class of materials highly i...
We study unconventional superconductivity in exfoliated single crystals of a promising three-dimensi...
The discovery of topological superconductivity in doped Bi2Se3 made this class of materials highly i...
AbstractWe report on the growth of high quality single crystals of CuxBi2Se3 with x=0, 0.12 and 0.15...
Topological superconductivity is of great contemporary interest and has been proposed in doped Bi2Se...
The crystal structure, electronic structure, and transport properties of crystals with the nominal c...
Contains fulltext : 234194.pdf (Publisher’s version ) (Open Access
Bi2Se3 is a known topological insulator. When doped with certain metals, this compound becomes super...
Topological insulator Bi2Se3 has shown a number of interesting physical properties. Doping Bi2Se3 wi...
We study unconventional superconductivity in exfoliated single crystals of a promising three-dimensi...
Bi2Se3 is one of a handful of known topological insulators. Here we show that copper intercalation i...
Bi2Se3 is one of a handful of known topological insulators. Here we show that copper intercalation i...
Topological insulators (Tis) are new emerging quantum materials with insulating bulks but conducting...
We show that by Ca doping the Bi2Se3 topological insulator, the Fermi level can be fine tuned to fal...
The topological insulator Bi2Se3 has been known to undergo a superconducting transition at tc=3.8K w...
The discovery of topological superconductivity in doped Bi2Se3 made this class of materials highly i...
We study unconventional superconductivity in exfoliated single crystals of a promising three-dimensi...
The discovery of topological superconductivity in doped Bi2Se3 made this class of materials highly i...
AbstractWe report on the growth of high quality single crystals of CuxBi2Se3 with x=0, 0.12 and 0.15...