Spawning rings of exceptional points out of Dirac cones
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Summary
The results indicate that the radiation existing in any open system can fundamentally alter its physical properties in ways previously expected only in the presence of material loss and gain.
- Type
- article
- Published
- 2015-04-03
- Cited by
- 825
- References
- 55
- Access
- Open access
- OpenAlex
- https://openalex.org/W1911454827
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4397685
Keywords
Physics, Parity (physics), Condensed matter physics, Quantum mechanics
References
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- PT-symmetry in honeycomb photonic lattices
- Parity–time symmetry and variable optical isolation in active–passive-coupled microresonators
- PT-symmetry breaking and laser-absorber modes in optical scattering systems.
- Parity-time–symmetric microring lasers
- Analysis of guided resonances in photonic crystal slabs
- Quantum noise and mode nonorthogonality in non-Hermitian PT-symmetric optical resonators
- Observation of trapped light within the radiation continuum
Cited by
- Manipulation of Dirac Cones in Mechanical Graphene
- Majorana bound states from exceptional points in non-topological superconductors
- Energy landscape and conical intersection points of the driven Rabi model
- Anti-parity–time symmetry with flying atoms
- Coalescence of exceptional points and phase diagrams for one-dimensional PT -symmetric photonic crystals
- -symmetric transport in non- -symmetric bi-layer optical arrays
- The emergence, coalescence and topological properties of multiple exceptional points and their experimental realization
- Observations of 't Hooft's sublattices and Dirac's monopole by inhomogeneous phases of solitons
- Supersymmetrical bounding of asymmetric states and quantum phase transitions by anti-crossing of symmetric states
- Topological energy transfer in an optomechanical system with exceptional points
- Conical intersections for light and matter waves
- Widened photonic functionality of asymmetric high-index contrast/photonic crystal gratings
- Exceptional Contours and Band Structure Design in Parity-Time Symmetric Photonic Crystals.
- PT symmetry in a fractional Schrödinger equation
- Observation of Parity-Time Symmetry in Optically Induced Atomic Lattices.
- General theory of spontaneous emission near exceptional points.
- Analytical Perspective of Interfering Resonances in High-Index-Contrast Periodic Photonic Structures
- Enhanced Spontaneous Emission at Third-Order Dirac Exceptional Points in Inverse-Designed Photonic Crystals.
- Quantum critical behavior influenced by measurement backaction in ultracold gases
- Scattering properties of PT-symmetric objects