Scientific Sessions

Conference Tracks

Explore nanoscale light-matter interaction, metasurfaces, plasmonics, quantum nanophotonics, and photonic AI.

Advanced Nanophotonics and Nanoscale Light-Matter Interactions

Fundamental and applied advances in manipulating light at nanoscale dimensions.

  • Nanoscale Light Manipulation
  • Near-Field Optical Phenomena
  • Strong Light-Matter Coupling
  • Nano-optical Materials and Devices

Metamaterials and Metasurfaces

Artificial optical materials and planar surfaces engineered for wavefront control.

  • Electromagnetic Metamaterials
  • Reconfigurable Metasurfaces
  • Dielectric and All-Dielectric Metasurfaces
  • Programmable and Intelligent Metasurfaces

Plasmonics and Surface Plasmon Photonics

Metallic, hybrid and active plasmonic systems for sensing, guiding and enhancement.

  • Surface Plasmon Resonance
  • Localized Surface Plasmons
  • Plasmonic Waveguides
  • Active and Tunable Plasmonics

Nanoantennas and Optical Field Enhancement

Optical antenna design, hot spots and field-enhanced spectroscopy.

  • Optical Nanoantennas
  • Hot-Spot Engineering
  • Near-Field Enhancement
  • Nanoantenna-Enhanced Spectroscopy

2D Materials and Nanophotonic Devices

Atomically thin materials integrated with plasmonic and photonic platforms.

  • Graphene Photonics
  • Transition Metal Dichalcogenides
  • 2D Material-Plasmonic Interfaces
  • Atomically Thin Optical Devices

Quantum Nanophotonics and Quantum Metasurfaces

Nanoscale platforms for quantum light generation, control and interaction.

  • Quantum Light Sources
  • Single-Photon Emitters
  • Quantum Metasurfaces
  • Quantum Light-Matter Interactions

Nonlinear Nanophotonics and Ultrafast Optical Phenomena

Nonlinear optical processes and ultrafast dynamics in nanostructured systems.

  • Nonlinear Optical Metamaterials
  • Harmonic Generation at the Nanoscale
  • Ultrafast Nanophotonics
  • Strong-Field Light-Matter Interactions

Active, Tunable and Reconfigurable Metamaterials

Materials and architectures enabling adaptive optical behavior.

  • Electrically Tunable Metamaterials
  • Optical and Thermal Switching
  • Phase-Change Metamaterials
  • Programmable Photonic Surfaces

Plasmonic Biosensing and Nanophotonic Sensors

Nanophotonic sensing technologies for chemical, biological and molecular detection.

  • Plasmonic Biosensors
  • Surface-Enhanced Raman Spectroscopy
  • Label-Free Molecular Detection
  • Nanoscale Chemical and Biological Sensing

Photonic Computing, Optical AI and Neuromorphic Photonics

Optical processors, photonic AI hardware and neuromorphic computing concepts.

  • Photonic Neural Networks
  • Optical Computing
  • AI-Enabled Nanophotonics
  • Neuromorphic Photonic Devices

Topological Photonics and Advanced Wave Engineering

Robust wave transport and topology-inspired photonic structures.

  • Topological Photonic Insulators
  • Topological Edge States
  • Robust Light Transport
  • Topological Metamaterials

Thermal, Infrared and Energy Nanophotonics

Nanophotonic control of heat, infrared radiation and energy conversion.

  • Radiative Cooling
  • Thermal Metamaterials
  • Infrared Nanophotonics
  • Thermophotovoltaics and Energy Harvesting

Chiral Nanophotonics and Structured Light

Control of chirality, polarization, angular momentum and structured optical fields.

  • Chiral Metamaterials
  • Optical Chirality
  • Metasurface-Generated Structured Light
  • Spin-Orbit Interactions of Light

Nano-optical Imaging, Spectroscopy and Characterization

Advanced measurement methods for nanoscale optical materials and devices.

  • Super-Resolution Optical Imaging
  • Near-Field Scanning Optical Microscopy
  • Plasmon-Enhanced Spectroscopy
  • Nanoscale Optical Characterization

Emerging Plasmonic and Metamaterial Technologies

New concepts, device architectures and translational pathways in nanophotonics.

  • Hyperbolic Metamaterials
  • ENZ and Epsilon-Near-Zero Photonics
  • Metasurface-Based Optical Devices
  • Next-Generation Nanophotonic Technologies