Incorporation of magnetic dopants into topological insulators to break time-reversal symmetry is a prerequisite for observing the quantum anomalous Hall (QAHE) effect and other novel magnetoelectric phenomena. GdBiTe3 with a Gd:Bi ratio of 1:1 is a proposed QAHE system, however, the reported solubility limit for Gd doping into Bi2Te3 bulk crystals is between ∼0.01 and 0.05. We present a magnetic study of molecular beam epitaxy grown (GdxBi1-x)2Te 3 thin films with a high Gd concentration, up to x ≈ 0.3. Magnetometry reveals that the films are paramagnetic down to 1.5 K. X-ray magnetic circular dichroism at the Gd M4,5 edge at 1.5 K reveals a saturation field of ∼6 T, and a slow decay of the magnetic moment with temperature up to 200 K. The ...
We investigate the magnetic properties of Ho-doped Bi2Te3 thin films grown by molecular beam epitaxy...
Three-dimensional topological insulators (TIs) are a class of materials for which the bulk is insula...
AbstractMagnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum pheno...
Incorporation of magnetic dopants into topological insulators to break time-reversal symmetry is a p...
Thin film GdBiTe3 has been proposed as a candidate material in which to observe the quantum anomalou...
Thin film GdBiTe3 has been proposed as a candidate material in which to observe the quantum anomalou...
Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivi...
Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivi...
Breaking time-reversal symmetry through magnetic doping of topological insulators has been identifie...
Breaking time-reversal symmetry through magnetic doping of topological insulators has been identifie...
This publication arises from research funded by the John Fell Oxford University Press (OUP) Research...
Magnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum phenomena, pa...
AbstractMagnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum pheno...
Magnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum phenomena, pa...
We investigate the magnetic properties of Ho-doped Bi2Te3 thin films grown by molecular beam epitaxy...
We investigate the magnetic properties of Ho-doped Bi2Te3 thin films grown by molecular beam epitaxy...
Three-dimensional topological insulators (TIs) are a class of materials for which the bulk is insula...
AbstractMagnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum pheno...
Incorporation of magnetic dopants into topological insulators to break time-reversal symmetry is a p...
Thin film GdBiTe3 has been proposed as a candidate material in which to observe the quantum anomalou...
Thin film GdBiTe3 has been proposed as a candidate material in which to observe the quantum anomalou...
Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivi...
Magnetic topological insulators (MTIs) are a novel materials class in which a topologically nontrivi...
Breaking time-reversal symmetry through magnetic doping of topological insulators has been identifie...
Breaking time-reversal symmetry through magnetic doping of topological insulators has been identifie...
This publication arises from research funded by the John Fell Oxford University Press (OUP) Research...
Magnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum phenomena, pa...
AbstractMagnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum pheno...
Magnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum phenomena, pa...
We investigate the magnetic properties of Ho-doped Bi2Te3 thin films grown by molecular beam epitaxy...
We investigate the magnetic properties of Ho-doped Bi2Te3 thin films grown by molecular beam epitaxy...
Three-dimensional topological insulators (TIs) are a class of materials for which the bulk is insula...
AbstractMagnetic doping of topological insulators (TIs) is crucial for unlocking novel quantum pheno...