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Parity-time-symmetric coupled microring lasers operating around an exceptional point
Optics Letters
|October 30, 2015
Summary
Researchers explored parity-time-symmetric coupled microring systems near exceptional points. This study demonstrates stable single-mode lasing in multimoded microrings by utilizing abrupt phase transitions.
Area of Science:
- Physics
- Optics
- Photonics
Background:
- Parity-time (PT) symmetry offers unique properties in optical systems.
- Exceptional points (EPs) are singularities in non-Hermitian systems where eigenvalues and eigenvectors coalesce.
- Microring resonators are fundamental components in integrated photonics.
Purpose of the Study:
- To investigate the behavior of PT-symmetric coupled microring systems near an exceptional point.
- To demonstrate stable single-mode lasing in spectrally multimoded microring systems.
Main Methods:
- Theoretical analysis of a parity-time-symmetric coupled microring system.
- Exploiting the abrupt phase transition occurring at an exceptional point.
- Experimental demonstration of lasing characteristics.
Main Results:
- The system exhibits distinct behavior in the vicinity of an exceptional point.
- Stable single-mode lasing is achieved in a system that would otherwise support multiple spectral modes.
- The abrupt phase transition at the EP facilitates mode selection.
Conclusions:
- Exceptional points in PT-symmetric microring systems can be leveraged for advanced optical functionalities.
- This work presents a novel method for achieving single-mode lasing in multimoded resonators.
- The findings have implications for developing stable and efficient laser sources in integrated photonic devices.

