Call for Abstract

8th International Conference and Exhibition on Lasers, Optics & Photonics, will be organized around the theme ““Exemplifying the Prominence of Lasers, Optics and Photonics in today’s world””

Optics 2017 is comprised of 14 tracks and 122 sessions designed to offer comprehensive sessions that address current issues in Optics 2017.

Submit your abstract to any of the mentioned tracks. All related abstracts are accepted.

Register now for the conference by choosing an appropriate package suitable to you.

  • Track 1-1Power photonics and green photonics
  • Track 1-2Display technology
  • Track 1-3Photonics crystals and photonic crystal fibres
  • Track 1-4Photodectors/ sensors and imaging
  • Track 1-5Photonics and ultrafast electronics
  • Track 1-6Photonics materials and devices
  • Track 2-1Adaptive optics
  • Track 2-2Optical instrumentation
  • Track 2-3Optical fabrication
  • Track 2-4Optics in astronomy and astrophysics
  • Track 2-5Integrated photonics
  • Track 2-6Diffractive optics
  • Track 2-7Computational optical sensing and imaging
  • Track 2-8Optical imaging
  • Track 2-9Applied optics
  • Track 3-1Fiber lasers
  • Track 3-2Free space communications
  • Track 3-3Fiber laser applications
  • Track 3-4Vertical external cavity surface-emitting lasers (vecsels)
  • Track 3-5Fiber laser manufacturing in industries and business opportunities
  • Track 3-6Fiber lasers and amplifiers
  • Track 3-7Fiber laser materials, design, fabrication and characterization
  • Track 3-8Fiber laser devices and components
  • Track 4-1MID-IR, quantum cascade and THZ lasers
  • Track 4-2Ultrafast chemical dynamics
  • Track 4-3Plasma technologies
  • Track 4-4Fibre lasers and applications
  • Track 4-5Waveguide lasers
  • Track 4-6High Intensity lasers
  • Track 4-7Quantum information and measurement
  • Track 4-8Semiconductor/diode lasers and LEDs
  • Track 4-9Type-II quantum-well and super lattice lasers
  • Track 4-10Gas lasers, chemical lasers and excimer lasers
  • Track 5-1Spectroscopy of nanostructures
  • Track 5-2Metamaterials
  • Track 5-3Nanoplasmonics
  • Track 5-4Nanodevices and nanophotonics
  • Track 5-5Biosensing and biophotonics
  • Track 5-6Nanofabrication and graphene technology
  • Track 5-7Photo detectors/solar cells
  • Track 5-8Applications of nanotechnology in optics
  • Track 6-1Advances in optical fiber communications
  • Track 6-2Design management and optical networks
  • Track 6-3Fibre optics communication
  • Track 6-4Novel optical networks elements
  • Track 6-5Optical fiber manufacturers and business analysis
  • Track 6-6Optical signal communication
  • Track 7-1Advanced optical sensors
  • Track 7-2Advanced optical fibers
  • Track 7-3Optical products and market analysis
  • Track 8-1Optical geometrics
  • Track 8-2Quantum gases
  • Track 8-3Quantum information and control
  • Track 8-4Quantum nano-optics
  • Track 8-5Theoretical solid-state optics
  • Track 8-6Theoretical-computational optical physics and applied mathematics
  • Track 8-7Ultrafast lasers
  • Track 9-1Lasers in ophthalmology
  • Track 9-2Clinical technologies and systems
  • Track 9-3Biomedical spectroscopy
  • Track 9-4Artificial vision and color
  • Track 9-5Optometry
  • Track 9-6Tissue optics
  • Track 9-7Optical coherence tomography
  • Track 9-8Biomedical optics
  • Track 9-9Lasers in tissue engineering: Laser tissue interaction
  • Track 9-10Lasers in cancer diagnosis and detection
  • Track 9-11Laser microscopies
  • Track 9-12Lasers in dentistry
  • Track 9-13Optoacoustic imaging of biological tissues
  • Track 10-1Optoelectronic devices and materials
  • Track 10-2Semiconductor materials and applications
  • Track 10-3MEMS and NEMS
  • Track 10-4Optoelectronic Instrumentation, measurement and metrology
  • Track 10-5Optical fibre sensors/detectors
  • Track 10-6Semiconductor nanostructures for electronics and optoelectronics
  • Track 10-7Optoelectronic integrated circuits
  • Track 10-8Optoelectronics business opportunities
  • Track 11-1Nonlinear quantum systems and quantum-optical technologies
  • Track 11-2Quantum cryptography
  • Track 11-3Quantum enabled sensors
  • Track 11-4Quantum interferometry and quantum metrology
  • Track 11-5Quantum mechanics
  • Track 11-6Quantum nanoscience
  • Track 11-7Quantum simulation
  • Track 12-1Surface enhanced raman scattering
  • Track 12-2Surface enhanced and tip enhanced spectroscopy of carbon materials (graphene, nanotubes, fullerenes and others)
  • Track 12-3Single molecule detection by SES
  • Track 12-4Surface enhanced terahertz spectroscopy
  • Track 12-5Surfaceenhanced fluorescence and luminescence
  • Track 12-6Surface enhanced infrared absorption
  • Track 12-7Surface enhanced raman scattering
  • Track 12-8Surface enhanced hyper raman scattering
  • Track 12-9Tip enhanced raman scattering and related spectroscopy and microscopy
  • Track 12-10Surface enhanced resonance raman scattering
  • Track 12-11Surface enhanced spectroscopy on semiconductors and dielectrics
  • Track 12-12Plasmon mechanisms of surface enhanced spectroscopy
  • Track 12-13Other surface enhanced optical phenomena
  • Track 13-1Fibre optics components, equipment and systems
  • Track 13-2Optics for astronomy
  • Track 13-3Optical manipulation techniques, spectroscopies, and scattering techniques
  • Track 13-4Lasers and semiconductors
  • Track 13-5Metrology instrumentation
  • Track 13-6Optical coatings
  • Track 13-7Precision fabrication
  • Track 13-8Microscopes and telescopes
  • Track 13-9Optical materials and substrates
  • Track 13-10Column laser technology
  • Track 14-1Optical metrology in industrial design and production engineering
  • Track 14-2Optical instrumentation and systems
  • Track 14-3Software-systems for optical metrology and inspection
  • Track 14-4Modelling aspects in optical metrology
  • Track 14-5High-resolution metrology
  • Track 14-6Videometrics, range imaging and applications
  • Track 14-73D-Sensing and visualization
  • Track 14-8Autonomic navigation
  • Track 14-9O3A: Optics for arts, architecture, and archaeology
  • Track 14-10Inspection, characterization and imaging of biomaterials and tissues
  • Track 14-11Multi-modal imaging and inspection technologies
  • Track 14-12Material recognition and verification
  • Track 14-13Defect recognition and verification
  • Track 14-14Image processing, image fusion and image modelling