We present a general methodology toward the systematic characterization of crystalline topological insulating phases with time-reversal symmetry. In particular, taking the two-dimensional spinful hexagonal lattice as a proof of principle, we study windings of Wilson loop spectra over cuts in the Brillouin zone that are dictated by the underlying lattice symmetries. Our approach finds a prominent use in elucidating and quantifying the recently proposed "topological quantum chemistry" concept. Namely, we prove that the split of an elementary band representation (EBR) by a band gap must lead to a topological phase. For this we first show that in addition to the Fu-Kane-Mele Z(2) classification, there is C2T-symmetry-protected Z classification ...
Topological phases in electronic structures contain a new type of topology, called fragile, which ca...
Realising photonic analogues of the robust, unidirectional edge states of electronic topological ins...
We propose an interferometric method to measure ℤ2 topological invariants of time-reversal invariant...
In this work, we examine the topological phases that can arise in triangular lattices with disconnec...
We study the bulk and boundary properties of fragile topological insulators (TIs) protected by inver...
The link between chemical orbitals described by local degrees of freedom and band theory, which is d...
Topological crystalline phases in electronic structures can be generally classified using the spatia...
The discovery of the quantum Hall effect by von Klitzing in 1980 paved the way for what is now known...
This thesis studies topological phases in various electronic crystalline systems with a focus on the...
Topological band-insulators (TBIs) represent a new class of quantum materials that in the presence o...
Topological band-insulators (TBIs) represent a new class of quantum materials that in the presence o...
We present a framework to systematically address topological phases when finer partitionings of band...
We predict and examine various topological states on a two-dimensional (2D) triangular kagome lattic...
Pontrjagin's seminal topological classification of two-band Hamiltonians in three momentum dimension...
Topological phases in electronic structures contain a new type of topology, called fragile, which ca...
Topological phases in electronic structures contain a new type of topology, called fragile, which ca...
Realising photonic analogues of the robust, unidirectional edge states of electronic topological ins...
We propose an interferometric method to measure ℤ2 topological invariants of time-reversal invariant...
In this work, we examine the topological phases that can arise in triangular lattices with disconnec...
We study the bulk and boundary properties of fragile topological insulators (TIs) protected by inver...
The link between chemical orbitals described by local degrees of freedom and band theory, which is d...
Topological crystalline phases in electronic structures can be generally classified using the spatia...
The discovery of the quantum Hall effect by von Klitzing in 1980 paved the way for what is now known...
This thesis studies topological phases in various electronic crystalline systems with a focus on the...
Topological band-insulators (TBIs) represent a new class of quantum materials that in the presence o...
Topological band-insulators (TBIs) represent a new class of quantum materials that in the presence o...
We present a framework to systematically address topological phases when finer partitionings of band...
We predict and examine various topological states on a two-dimensional (2D) triangular kagome lattic...
Pontrjagin's seminal topological classification of two-band Hamiltonians in three momentum dimension...
Topological phases in electronic structures contain a new type of topology, called fragile, which ca...
Topological phases in electronic structures contain a new type of topology, called fragile, which ca...
Realising photonic analogues of the robust, unidirectional edge states of electronic topological ins...
We propose an interferometric method to measure ℤ2 topological invariants of time-reversal invariant...