Quantum Hall system possesses topologically protected edge states which have enormous theoretical and practical implications in both fermionic and bosonic systems. Harnessing the quantum Hall effect in optical platforms with lower dimensionality is highly desirable with synthetic dimensions and has attracted broad interests in the photonics society. Here, we introduce an alternative way to realize the artificial magnetic field in a frequency dimension, which is achieved in a pump-probe configuration with cross-phase modulations in a one-dimensional four waveguide array. The dynamics of the topological chiral edge state has been studied and the influence from the crosstalk of the pump fields has been explored. Our work shows an all-optical w...
This is the final version. Available on open access from the American Physical Society via the DOI i...
We construct a semiclassical theory for propagation of an optical wavepacket in non-conducting media...
Photonic topological phases offering unprecedented manipulation of electromagnetic waves have attrac...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
We study light-matter interactions in the bulk of a two-dimensional photonic lattice system, where p...
We experimentally realize a photonic analogue of the anomalous quantum Hall insulator using a two-di...
© 2019 American Physical Society.We experimentally realize a photonic analogue of the anomalous quan...
Recent technological advances in integrated photonics have spurred on the study of topological pheno...
Geometrical dimensionality plays a fundamentally important role in the topological effects arising i...
The discovery of artificial gauge fields controlling the dynamics of uncharged particles that otherw...
Phenomena associated with the topological properties of physical systems can be naturally robust aga...
We propose a scheme to realize a topological insulator with optical-passive elements and analyze the...
One of the most striking phenomena in condensed-matter physics is the quantum Hall effect, which ari...
Recent interest in optical analogs to the quantum spin Hall and quantum valley Hall effects is drive...
Topological photonic interfaces support topologically nontrivial optical modes with helical characte...
This is the final version. Available on open access from the American Physical Society via the DOI i...
We construct a semiclassical theory for propagation of an optical wavepacket in non-conducting media...
Photonic topological phases offering unprecedented manipulation of electromagnetic waves have attrac...
We extend the t-z mapping of time-dependent paraxial optics by engineering a synthetic magnetic vect...
We study light-matter interactions in the bulk of a two-dimensional photonic lattice system, where p...
We experimentally realize a photonic analogue of the anomalous quantum Hall insulator using a two-di...
© 2019 American Physical Society.We experimentally realize a photonic analogue of the anomalous quan...
Recent technological advances in integrated photonics have spurred on the study of topological pheno...
Geometrical dimensionality plays a fundamentally important role in the topological effects arising i...
The discovery of artificial gauge fields controlling the dynamics of uncharged particles that otherw...
Phenomena associated with the topological properties of physical systems can be naturally robust aga...
We propose a scheme to realize a topological insulator with optical-passive elements and analyze the...
One of the most striking phenomena in condensed-matter physics is the quantum Hall effect, which ari...
Recent interest in optical analogs to the quantum spin Hall and quantum valley Hall effects is drive...
Topological photonic interfaces support topologically nontrivial optical modes with helical characte...
This is the final version. Available on open access from the American Physical Society via the DOI i...
We construct a semiclassical theory for propagation of an optical wavepacket in non-conducting media...
Photonic topological phases offering unprecedented manipulation of electromagnetic waves have attrac...