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Engineering novel infrared glass ceramics for advanced optical solutions
K. Richardson
, A. Buff
, C. Smith
, L. Sisken
, J. David Musgraves
, P. Wachtel
, T. Mayer
, A. Swisher
, A. Pogrebnyakov
, M. Kang
, C. Pantano
,
D. Werner
, A. Kirk
, S. Aiken
, C. Rivero-Baleine
Materials Science and Engineering
Materials Research Institute (MRI)
Electrical Engineering
Research output
:
Chapter in Book/Report/Conference proceeding
›
Conference contribution
15
Scopus citations
Overview
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Keyphrases
Refractive Index
100%
Controlled Crystallization
100%
Morphological Properties
100%
Physical Properties
100%
Optical Properties
100%
Design Components
100%
Glass Material
100%
Glass-ceramics
100%
Optical Components
100%
Transmission Loss
100%
Material Microstructure
100%
Optical Solutions
100%
GeSe2
100%
Optical Materials
100%
Device Integration
100%
Property Evolution
100%
Material Forming
100%
Transmission Index
100%
PbSe
100%
Multi-component Chalcogenide Glasses
100%
Spectral Transparency
100%
Composition Materials
100%
Chalcogenide Glass Material
100%
Infrared Glasses
100%
Photonic Devices
100%
Optical Functions
100%
Optical Fabrication
100%
Loss Index
100%
As2Se3
100%
Optical Design
100%
Material Morphology
100%
Integration Constraint
100%
Material Science
Glass
100%
Glass Ceramics
100%
Infrared Glass
100%
Refractive Index
50%
Physical Property
50%
Optical Property
50%
Optical Device
50%
Chalcogenides Glass
50%
Optical Material
50%
Device Integration
50%
Engineering
Material Form
100%
Photonic Devices
100%
Component Device
100%
Optical Design
100%