We propose a scheme to simulate topological physics within a single degenerate cavity, whose modes are mapped to lattice sites. A crucial ingredient of the scheme is to construct a sharp boundary so that the open boundary condition can be implemented for this effective lattice system. In doing so, the topological properties of the system can manifest themselves on the edge states, which can be probed from the spectrum of an output cavity field. We demonstrate this with two examples: a static Su-Schrieffer-Heeger chain and a periodically driven Floquet topological insulator. Our work opens up new avenues to explore exotic photonic topological phases inside a single optical cavity
Topological photonic systems offer light transport that is robust against defects and disorder, prom...
Synthetic dimensions based on particles' internal degrees of freedom, such as frequency, spatial mod...
Topological insulators (TI) are a fascinating new state of matter. Like usual insulators, their band...
When a d-dimensional quantum system is subjected to a periodic drive, it may be treated as a (d+1)-d...
Controlling the topological properties of quantum matter is a major goal of condensed matter physics...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
We show that Floquet topological insulating states can exist in two-dimensional photonic crystals ma...
In integrated photonics, cavity resonators play an important role. They are the basis of light sour...
The Su-Schrieffer-Heeger model of polyacetylene is a paradigmatic Hamiltonian exhibiting nontrivial ...
In integrated photonics, cavity resonators play an important role. They are the basis of light sour...
Topological photonic systems offer light transport that is robust against defects and disorder, prom...
Synthetic dimensions based on particles' internal degrees of freedom, such as frequency, spatial mod...
Topological insulators (TI) are a fascinating new state of matter. Like usual insulators, their band...
When a d-dimensional quantum system is subjected to a periodic drive, it may be treated as a (d+1)-d...
Controlling the topological properties of quantum matter is a major goal of condensed matter physics...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
12 pages, 5 figuresInternational audienceControlling the topological properties of quantum matter is...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
This is the final version. Available from the American Physical Society via the DOI in this recordWe...
We study the unconventional topological phases of polaritons inside a cavity waveguide, demonstratin...
We show that Floquet topological insulating states can exist in two-dimensional photonic crystals ma...
In integrated photonics, cavity resonators play an important role. They are the basis of light sour...
The Su-Schrieffer-Heeger model of polyacetylene is a paradigmatic Hamiltonian exhibiting nontrivial ...
In integrated photonics, cavity resonators play an important role. They are the basis of light sour...
Topological photonic systems offer light transport that is robust against defects and disorder, prom...
Synthetic dimensions based on particles' internal degrees of freedom, such as frequency, spatial mod...
Topological insulators (TI) are a fascinating new state of matter. Like usual insulators, their band...