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Curved Nanomembrane-Based Concentric Ring Cavities for Supermode Hybridization.

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Area of Science:

  • Photonics and optical physics
  • Nanotechnology and materials science

Background:

  • Whispering gallery mode (WGM) resonances are crucial in optical cavities.
  • Concentric dual ring cavities offer unique mode confinement and interaction possibilities.

Purpose of the Study:

  • To investigate mode interactions and resonant hybridization in nanomembrane-formed concentric dual ring cavities.
  • To demonstrate control over coupling strength and supermode behavior in these hybrid cavities.

Main Methods:

  • Fabrication of dual concentric microring cavities using rolled-up nanomembranes with a subwavelength-thickness interlayer.
  • Utilizing high-index nanomembranes on inner and outer surfaces of the dielectric nanomembrane.
  • Spatially resolved measurements along the cavity axial direction to detune coupled supermodes.

Main Results:

  • Observation of mode splitting into symmetric and antisymmetric modes in the dual ring system.
  • Demonstration of spectral anticrossing, indicating strong coupling between modes.
  • Observation of superwaves oscillating between concentric rings with opposite phase upon strong coupling.
  • Tunable coupling strength by varying the spacer layer thickness, enabling switching between strong and weak coupling regimes.

Conclusions:

  • The developed hybrid cavity system enables novel cavity mode interactions through resonant hybridization.
  • The system offers high flexibility in controlling coupling strength, crucial for fundamental and applied studies.
  • This compact and robust scheme using curved nanomembranes paves the way for advanced optical device applications.