Advances in Optoelectronic Technology and Industry Development

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3D
advanced image analysis
biomedical imaging applications
biomedical optics
Bit Error Rate
Category=PHJ
Cep
digital image processing
display systems
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Extinction Ratio
Eye Diagrams
FBG
gas lasers
Graphene Oxide
Graphene Oxide Coating
holography
image analysis
image processing
Initial Chirp
integrated circuits photonics
laser diodes
laser physics and nonlinear optics
laser technology
laser technology and applications
laser tissue interactions and laser surgery
Light Weight
Local Oscillator
medical and biological applications
medical imaging
Microchip Laser
Multi-peak Structure
non-Markovian Environment
OLED
optical coherence tomography
optical communications
optical fiber communication
optical sensor systems
Optical Switch
optical-system engineering for medicine
optics in biotechnology
optoelectronic device integration research
optoelectronic devices and integration
optoelectronics technology
PCFs
photodetector technology
Photonic Crystal
photonics technology
remote sensing
semiconductor lasers
silicon photonics
SMF
SNR Variance
SOA
Spin Polarization
Split Step Fourier Method
Subwavelength Gratings
tera-hertz
visualization
VLC
WDM PON

Product details

  • ISBN 9780367246341
  • Weight: 630g
  • Dimensions: 174 x 246mm
  • Publication Date: 08 Oct 2019
  • Publisher: Taylor & Francis Ltd
  • Publication City/Country: GB
  • Product Form: Hardback
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This book presents recent and important developments in the field of Photonics and Optoelectronics, with a particular focus on Laser Technology, Optical Communications, Optoelectronic Devices and Image Processing. At present, Photonics and Optoelectronics Technologies are pivotal to the future of laser, displays, sensors and communication technologies, and currently being developed at an extraordinary rate. This book details the theories underlying the mechanisms involved in the relevant Photonics and Optoelectronics. Devices such as laser diodes, photodetectors, and integrated optoelectronic circuits are investigated. The reviews by leading experts are of interest to researchers and engineers as well as advanced students.

Prof. Jose’s research interests are in the areas of photonic glasses, femtosecond pulsed laser deposition and plasma implantation, planar waveguide devices on glass, silicon and polymer platforms, and photonic biosensors. The ultrafast laser plasma doping (ULPD) process in glass that he invented has been the core technology behind novel optoelectronic applications that he is developing. He is leading a large EPSRC-UK functional materials manufacturing research project for developing ULPD for application in advanced integrated photonics for optical data communication (www.seamatics.org). Glasses functionalised using ULPD are attractive for non-invasive biosensing, integrated photonics, anti-counterfeiting/printing in glass bottles (www.ultramatis.com) and toughening of glass for displays. A number of researchers and industrial partners are involved in these research and development activities of his group.

Mário F. S. Ferreira was born in Ovar, Portugal. He graduated in Physics from the University of Porto, Portugal, and he received the Ph.D. degree in Physics in 1992 and the Aggregation in Physics in 2006, both from the University of Aveiro, Portugal, where he is now a Professor at the Physics Department. Between 1990 and 1991 he was at the University of Essex, UK, performing experimental work on external cavity semiconductor lasers and nonlinear optical fiber amplifiers. His research interests have been concerned with the modelling and characterization of multi-section semiconductor lasers for coherent systems, quantum well lasers, optical fiber amplifiers and lasers, soliton propagation, nanophotonics, optical sensors, polarization and nonlinear effects in optical fibers. He is the leader of the Optics and Optoelectronics Group of the I3N – Institute of Nanostructures, Nanomodelling and Nanofabrication. He has written approximately 350 scientific journal and conference publications, and several books, namely: "Optics and Photonics" (Lidel,2003, in Portuguese), "Topics of Mathematical Physics" (Editora Ciência Moderna, 2017, Brazil, in Portuguese), "Optical Fibers: Technology, Communications and recent Advances" (Ed., NOVA Science Publishers, 2016), and "Nonlinear Effects in Optical Fibers" (John Wiley & Sons, OSA, 2011).