
Multispectral Image Sensors Using Metasurfaces by Xin He
This book presents how metasurfaces are exploited to develop new low-cost single sensor based multispectral cameras. Multispectral cameras extend the concept of conventional colour cameras to capture images with multiple color bands and with narrow spectral passbands. Images from a multispectral camera can extract significant amount of additional information that the human eye or a normal camera fails to capture and thus have important applications in precision agriculture, forestry, medicine, object identifications, and classifications. Conventional multispectral cameras are made up of multiple image sensors each externally fitted with a narrow passband wavelength filters, optics and multiple electronics. The need for multiple sensors for each band results in a number of problems such as being bulky, power hungry and suffering from image co-registration problems which in turn limits their wide usage. The above problems can be eliminated if a multispectral camera is developed using one single image sensor.-
Modern Techniques of Spectroscopy
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Nanomaterials for Luminescent Devices, Sensors, and Bio-imaging Applications
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Generative AI for Photonic Sensing
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Advanced Optical Sensors
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Mid-Infrared Fluoride and Chalcogenide Glasses and Fibers
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Material Characterization Techniques and Applications
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New Directions in Thin Film Nanophotonics
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LED-Based Photoacoustic Imaging
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Azimuthal Walsh Filters
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Advanced Fiber Sensing Technologies
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Precision Lens Molding of Glass: A Process Perspective
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White Light Emitting Materials
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Linear and Nonlinear Optical Spectroscopy and Microscopy
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Computational Optical Phase Imaging
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Spontaneous Symmetry Breaking, Self-Trapping, and Josephson Oscillations
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Persistent Luminescence
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Advanced Optical Methods for Brain Imaging
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Optical Spatial Solitons in Photorefractive Materials
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Nonlinear Optical Materials for All-Optical Switching Applications
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Optoelectronic Gyroscopes
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Advanced Geometrical Optics
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Optical Fiber Sensors and AI
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Applied Spectroscopy and the Science of Nanomaterials
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General Theory of Light Propagation and Imaging Through the Atmosphere
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Advanced Functional Materials for Optical and Hazardous Sensing
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Optical Properties of Metal Oxide Nanostructures
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Advanced Materials for Solid State Lighting
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Upconversion Nanoparticles (UCNPs) for Functional Applications
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Frontiers in Biophotonics for Translational Medicine
Xin He received his M.Eng. and Ph.D degrees from the University of Melbourne, Australia, in 2016 and 2020 respectively. His research interests include metasurface, nano-optics and spectral imaging. He obtained advanced skills on Micro/Nano Fabrication and COMSOL Multiphysics with RF and optics model. Except publications, he also created a prototype of a multispectral image sensor with 6 bands in the visible and infrared bands for commercial exploitation.
Paul Beckett received his B. Eng. degree in Communication Engineering, M. Eng. and Ph.D. degrees from RMIT University, Melbourne, Australia, in 1975, 1984, and 2007, respectively. Recently retired after an academic career spanning 38 years, he is currently an Honorary Associate Professor with the School of Engineering, RMIT University where his research interests include the design and simulation of nanoscale architectures and the mixed–signal modeling of asynchronous reconfigurable circuits.
Ranjith R Unnithan is a Research Group Leader and Senior Lecturer at the Department of Electrical and Electronic Engineering, the University of Melbourne, Melbourne, VIC, Australia. He is also Director of sensor research at Hort-Eye Pty Ltd., Melbourne. He received his Ph.D. degree in electrical engineering from the University of Cambridge, Cambridge, U.K., in November 2011. His research areas span CMOS image sensors, AR displays, sensor electronics for biomedical applications, drone-based sensors and applications, multispectral thermal cameras, and nanophotonic engineering.
| SKU | Unavailable |
| ISBN 13 | 9789811675171 |
| ISBN 10 | 9811675171 |
| Title | Multispectral Image Sensors Using Metasurfaces |
| Author | Xin He |
| Series | Progress In Optical Science And Photonics |
| Condition | Unavailable |
| Binding Type | Paperback |
| Publisher | Springer Verlag, Singapore |
| Year published | 2022-11-29 |
| Number of pages | 112 |
| Cover note | Book picture is for illustrative purposes only, actual binding, cover or edition may vary. |
| Note | Unavailable |































