Kagome lattices represent an archetype of intriguing physics, attracting a great deal of interest in different branches of natural sciences, recently in the context of topological crystalline insulators. Here, we demonstrate two distinct classes of corner states in breathing Kagome lattices (BKLs) with "bearded" edge truncation, unveiling their topological origin. The in-phase corner states are found to exist only in the topologically nontrivial regime, characterized by a nonzero bulk polarization. In contrast, the out-of-phase corner states appear in both topologically trivial and nontrivial regimes, either as bound states in the continuum or as in-gap states depending on the lattice dimerization conditions. Furthermore, the out-of-phase c...
We devise a generic recipe for constructing D-dimensional lattice models whose d-dimensional boundar...
One-dimensional laser-written modulated photonic lattices are known to be particularly suitable for ...
There is enormous interest in engineering topological photonic systems. Despite intense activity, mo...
We study the non-trivial phase of the two-dimensional breathing kagome lattice, displaying both edge...
Higher-order topological insulators1-5 are a family of recently predicted topological phases of matt...
Topological properties of lattices are typically revealed in momentum space using concepts such as t...
The recently established paradigm of higher-order topological states of matter has shown that not on...
We address the resonant response and bistability of the exciton–polariton corner states in a higher-...
Abstract Higher-order topological insulators, as newly found non-trivial materials and structures, p...
A higher-order topological insulator (HOTI) in two dimensions is an insulator without metallic edge ...
Topological properties play a fundamental role in many physical phenomena. One of the examples from ...
Higher-order topological states that are robust against certain classes of disorder and pinned to la...
We investigate topological insulator properties of the kagome helical waveguide array, by utilizing ...
We theoretically study the topological properties of the tight-binding model on the breathing kagome...
We study a system of microcavity pillars arranged into a kagome lattice. We show that polarization-d...
We devise a generic recipe for constructing D-dimensional lattice models whose d-dimensional boundar...
One-dimensional laser-written modulated photonic lattices are known to be particularly suitable for ...
There is enormous interest in engineering topological photonic systems. Despite intense activity, mo...
We study the non-trivial phase of the two-dimensional breathing kagome lattice, displaying both edge...
Higher-order topological insulators1-5 are a family of recently predicted topological phases of matt...
Topological properties of lattices are typically revealed in momentum space using concepts such as t...
The recently established paradigm of higher-order topological states of matter has shown that not on...
We address the resonant response and bistability of the exciton–polariton corner states in a higher-...
Abstract Higher-order topological insulators, as newly found non-trivial materials and structures, p...
A higher-order topological insulator (HOTI) in two dimensions is an insulator without metallic edge ...
Topological properties play a fundamental role in many physical phenomena. One of the examples from ...
Higher-order topological states that are robust against certain classes of disorder and pinned to la...
We investigate topological insulator properties of the kagome helical waveguide array, by utilizing ...
We theoretically study the topological properties of the tight-binding model on the breathing kagome...
We study a system of microcavity pillars arranged into a kagome lattice. We show that polarization-d...
We devise a generic recipe for constructing D-dimensional lattice models whose d-dimensional boundar...
One-dimensional laser-written modulated photonic lattices are known to be particularly suitable for ...
There is enormous interest in engineering topological photonic systems. Despite intense activity, mo...