We report the doping effect of a magnetic Fe ion in Bi2Te3, that is, Bi2-xFexTe3 (x = 0, 0.08, 0.15, 0.2, 0.25, and 0.3). The paramagnetic magnetization data reveal that the Fe ions are doped in the divalent form. The Fe2+ state substituted for Bi3+ can create hole donors, which compensate for the electron dopants of Bi2Te3 with a small amount of Te excess. This causes the n-type carrier density to be decreased with increasing x, and finally be changed to p type at x = 0.3, where the carrier mobility suddenly drops and the electrical resistivity abruptly increases. These results are consistent with angle-resolved photoemission spectroscopy experiments. The Fermi level shifts downward with increasing x. Furthermore, we find a larger spin pol...
Magnetic doping of topological insulators (TIs) is a prerequisite for their application as spin-base...
It is generally accepted that Bi2Te3 prepared from stoichiometric melts has p-type charge carriers g...
Incorporation of magnetic dopants into topological insulators to break time-reversal symmetry is a p...
The influence of magnetic dopants on the electronic and chemical environments in topological insulat...
The development of ferromagnetism in Mn-doped Bi2Te3 is characterized through measurements on a seri...
Magnetic doping with transition metal ions is the most widely used approach to break time-reversal s...
Breaking the time reversal symmetry of a topological insulator, for example by the presence of magne...
The development of ferromagnetism in Mn-doped Bi_2Te_3 is characterized through measurements on a se...
Funding Information: S.S. acknowledges IIT Mandi for an HTRA fellowship. C.S.Y. acknowledges the exp...
Bi2Te3 is a well-known thermoelectric material for room-temperature operations because it has a high...
The influence of magnetic dopants on the electronic and chemical environments in topological insulat...
We studied the doping of a Bi2Te3 single crystal using angle-resolved photoemission and ab initio el...
Magnetic doping with transition metal ions is the most widely used approach to break time-reversal s...
To study the in situ doping effect upon monotonically increasing dopant concentration, a Bi2Te3 laye...
We study the effect of Fe impurities in Bi2Se3 on the magnetic phase and topological insulating prop...
Magnetic doping of topological insulators (TIs) is a prerequisite for their application as spin-base...
It is generally accepted that Bi2Te3 prepared from stoichiometric melts has p-type charge carriers g...
Incorporation of magnetic dopants into topological insulators to break time-reversal symmetry is a p...
The influence of magnetic dopants on the electronic and chemical environments in topological insulat...
The development of ferromagnetism in Mn-doped Bi2Te3 is characterized through measurements on a seri...
Magnetic doping with transition metal ions is the most widely used approach to break time-reversal s...
Breaking the time reversal symmetry of a topological insulator, for example by the presence of magne...
The development of ferromagnetism in Mn-doped Bi_2Te_3 is characterized through measurements on a se...
Funding Information: S.S. acknowledges IIT Mandi for an HTRA fellowship. C.S.Y. acknowledges the exp...
Bi2Te3 is a well-known thermoelectric material for room-temperature operations because it has a high...
The influence of magnetic dopants on the electronic and chemical environments in topological insulat...
We studied the doping of a Bi2Te3 single crystal using angle-resolved photoemission and ab initio el...
Magnetic doping with transition metal ions is the most widely used approach to break time-reversal s...
To study the in situ doping effect upon monotonically increasing dopant concentration, a Bi2Te3 laye...
We study the effect of Fe impurities in Bi2Se3 on the magnetic phase and topological insulating prop...
Magnetic doping of topological insulators (TIs) is a prerequisite for their application as spin-base...
It is generally accepted that Bi2Te3 prepared from stoichiometric melts has p-type charge carriers g...
Incorporation of magnetic dopants into topological insulators to break time-reversal symmetry is a p...