Asymmetric Fano resonance arises from quantum interference between discrete and continuum states. The characteristic asymmetry has attracted strong interests in understanding light-induced optoelectronic responses and corresponding applications. In conventional solids, however, the tunability of Fano resonance is generally limited by a material's intrinsic property. Topological insulators are unique states of matter embodying both conducting Dirac surface and underlying bulk. If it is possible to manipulate the two coexisting states, then it should form an ideal laboratory for realizing a tunable topological Fano system. Here, with the recently discovered topological phase transition in (Bi1-xInx)(2)Se-3, we report tunable Fano interfe...
Abstract. We report a tunable Fano system realized in a quantum dot embedded in an Aharonov-Bohm int...
We present a theoretical analysis showing that layered topological insulators, for example, Bi2Se3 a...
The advances in topological condensed matter physics enable the manipulation of classic waves in dif...
Plasmonics is a technology aiming at light modulation via collective charge oscillations. Topologica...
Plasmonics is a technology aiming at light modulation via collective charge oscillations. Topologica...
We report upon observation of a transient Fano resonance, a quantum interference between coherent ph...
Plasmonics is a technology aiming at light modulation via collective charge oscillations. Topologica...
Understanding the mutual interaction between electronic excitations and lattice vibrations is key fo...
The demand for disorder-tolerant quantum logic and spin electronics can be met by generating and con...
© 2016, Springer-Verlag Berlin Heidelberg.We introduce a comprehensive approach to the design of mir...
We investigate the interaction between a topological insulator nanoparticle and a quantum dot in an ...
We investigate interference between topological interfacial modes in a semiconductor photonic crysta...
University of Tokyo, 5-1-5 Kashiwanoha, Chiba 277-8581, Japan The Fano effect illustrates how the in...
Abstract Quantum anomalous Hall (QAH) effect generates quantized electric charge Hall conductance wi...
A 3D Topological Insulator TI is an intrinsically stratified electronic material characterized by ...
Abstract. We report a tunable Fano system realized in a quantum dot embedded in an Aharonov-Bohm int...
We present a theoretical analysis showing that layered topological insulators, for example, Bi2Se3 a...
The advances in topological condensed matter physics enable the manipulation of classic waves in dif...
Plasmonics is a technology aiming at light modulation via collective charge oscillations. Topologica...
Plasmonics is a technology aiming at light modulation via collective charge oscillations. Topologica...
We report upon observation of a transient Fano resonance, a quantum interference between coherent ph...
Plasmonics is a technology aiming at light modulation via collective charge oscillations. Topologica...
Understanding the mutual interaction between electronic excitations and lattice vibrations is key fo...
The demand for disorder-tolerant quantum logic and spin electronics can be met by generating and con...
© 2016, Springer-Verlag Berlin Heidelberg.We introduce a comprehensive approach to the design of mir...
We investigate the interaction between a topological insulator nanoparticle and a quantum dot in an ...
We investigate interference between topological interfacial modes in a semiconductor photonic crysta...
University of Tokyo, 5-1-5 Kashiwanoha, Chiba 277-8581, Japan The Fano effect illustrates how the in...
Abstract Quantum anomalous Hall (QAH) effect generates quantized electric charge Hall conductance wi...
A 3D Topological Insulator TI is an intrinsically stratified electronic material characterized by ...
Abstract. We report a tunable Fano system realized in a quantum dot embedded in an Aharonov-Bohm int...
We present a theoretical analysis showing that layered topological insulators, for example, Bi2Se3 a...
The advances in topological condensed matter physics enable the manipulation of classic waves in dif...