Magnetically doped topological insulators enable the quantum anomalous Hall effect (QAHE), which provides quantized edge states for lossless charge-transport applications. The edge states are hosted by a magnetic energy gap at the Dirac point, but hitherto all attempts to observe this gap directly have been unsuccessful. Observing the gap is considered to be essential to overcoming the limitations of the QAHE, which so far occurs only at temperatures that are one to two orders of magnitude below the ferromagnetic Curie temperature, TC. Here we use low-temperature photoelectron spectroscopy to unambiguously reveal the magnetic gap of Mn-doped Bi2Te3, which displays ferromagnetic out-of-plane spin texture and opens up only below TC. Surprisin...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
The combination of topological properties and magnetic order can lead to new quantum states and exot...
Magnetically doped topological insulators enable the quantum anomalous Hall effect (QAHE), which pro...
Combining magnetism and nontrivial band topology gives rise to quantum anomalous Hall (QAH) insulato...
Combining magnetism and nontrivial band topology gives rise to quantum anomalous Hall (QAH) insulato...
Intrinsic magnetic topological insulators offer low disorder and large magnetic band gaps for robust...
Intrinsic magnetic topological insulators offer low disorder and large magnetic band gaps for robust...
Intrinsic magnetic topological insulators offer low disorder and large magnetic bandgaps for robust ...
Inducing magnetism into topological insulators is intriguing for utilizing exotic phenomena such as ...
Ferromagnetic topological insulators exhibit the quantum anomalous Hall effect, which is potentially...
Ferromagnetic topological insulators exhibit the quantum anomalous Hall effect, which is potentially...
Ferromagnetic topological insulators exhibit the quantum anomalous Hall effect, which is potentially...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
The combination of topological properties and magnetic order can lead to new quantum states and exot...
Magnetically doped topological insulators enable the quantum anomalous Hall effect (QAHE), which pro...
Combining magnetism and nontrivial band topology gives rise to quantum anomalous Hall (QAH) insulato...
Combining magnetism and nontrivial band topology gives rise to quantum anomalous Hall (QAH) insulato...
Intrinsic magnetic topological insulators offer low disorder and large magnetic band gaps for robust...
Intrinsic magnetic topological insulators offer low disorder and large magnetic band gaps for robust...
Intrinsic magnetic topological insulators offer low disorder and large magnetic bandgaps for robust ...
Inducing magnetism into topological insulators is intriguing for utilizing exotic phenomena such as ...
Ferromagnetic topological insulators exhibit the quantum anomalous Hall effect, which is potentially...
Ferromagnetic topological insulators exhibit the quantum anomalous Hall effect, which is potentially...
Ferromagnetic topological insulators exhibit the quantum anomalous Hall effect, which is potentially...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by break...
The combination of topological properties and magnetic order can lead to new quantum states and exot...