Symmetries play a crucial role in the classification of topological phases of matter. Although recent studies have established a powerful framework to search for and classify topological phases based on symmetry indicators, there exists a large class of fragile topology beyond the description. The Euler class characterizing the topology of two-dimensional real wave functions is an archetypal fragile topology underlying some important properties, such as non-Abelian braiding of crossing nodes and higher-order topology. However, as a minimum model of fragile topology, the two-dimensional topological Euler insulator consisting of three bands remains a significant challenge to be implemented in experiments. Here, we experimentally realize a thr...
Topological phases are gapped quantum phases of matter classified beyond the paradigm of Landau's sy...
Topological phenomena in condensed matter physics have been investigated intensively in the past dec...
The ability to precisely and coherently control atomic systems has improved dramatically in the last...
Floquet engineering provides a toolbox for the realization of novel quantum phases without static co...
Since the notion of topological insulator (TI) was envisioned in late 2000s, topology has become a n...
We predict and examine various topological states on a two-dimensional (2D) triangular kagome lattic...
Quantum systems evolve in time in one of two ways: through the Schr\"odinger equation or wavefunctio...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
Triply degenerate points (TDPs), which correspond to new types of topological semimetals, can suppor...
We propose a new theory to characterize equilibrium topological phase with non-equilibrium quantum d...
Pontrjagin's seminal topological classification of two-band Hamiltonians in three momentum dimension...
We demonstrate a generic mechanism to realize topological flat minibands by confining massive Dirac ...
We consider electron--hole Cooper pair condensation in a heterostructure formed by a topological ins...
Constructing new topological materials is of vital interest for the development of robust quantum ap...
Higher-order topological states that possess gapped bulk energy bands and exotic topologically prote...
Topological phases are gapped quantum phases of matter classified beyond the paradigm of Landau's sy...
Topological phenomena in condensed matter physics have been investigated intensively in the past dec...
The ability to precisely and coherently control atomic systems has improved dramatically in the last...
Floquet engineering provides a toolbox for the realization of novel quantum phases without static co...
Since the notion of topological insulator (TI) was envisioned in late 2000s, topology has become a n...
We predict and examine various topological states on a two-dimensional (2D) triangular kagome lattic...
Quantum systems evolve in time in one of two ways: through the Schr\"odinger equation or wavefunctio...
Topological phenomena in physical systems are determined by topological structures and are thus univ...
Triply degenerate points (TDPs), which correspond to new types of topological semimetals, can suppor...
We propose a new theory to characterize equilibrium topological phase with non-equilibrium quantum d...
Pontrjagin's seminal topological classification of two-band Hamiltonians in three momentum dimension...
We demonstrate a generic mechanism to realize topological flat minibands by confining massive Dirac ...
We consider electron--hole Cooper pair condensation in a heterostructure formed by a topological ins...
Constructing new topological materials is of vital interest for the development of robust quantum ap...
Higher-order topological states that possess gapped bulk energy bands and exotic topologically prote...
Topological phases are gapped quantum phases of matter classified beyond the paradigm of Landau's sy...
Topological phenomena in condensed matter physics have been investigated intensively in the past dec...
The ability to precisely and coherently control atomic systems has improved dramatically in the last...