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Optoelectronics
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{{Short description|Branch of electronics involving optics}} {{Distinguish|electro-optics}} [[File:Light sensor.png|thumb|Electronic light sensors]] '''Optoelectronics''' (or '''optronics''') is the study and application of [[electronics|electronic]] devices and systems that find, detect and control [[light]], usually considered a sub-field of [[photonics]]. In this context, ''light'' often includes invisible forms of radiation such as [[gamma ray]]s, [[X-ray]]s, [[ultraviolet]] and [[infrared]], in addition to visible light. Optoelectronic devices are electrical-to-optical or optical-to-electrical [[transducer]]s, or instruments that use such devices in their operation.<ref>{{Cite book|url=https://pubs.rsc.org/en/content/ebook/978-1-84973-826-2|title=Supramolecular Materials for Opto-Electronics|series=Smart Materials Series|date=November 20, 2014|doi=10.1039/9781782626947|isbn=978-1-84973-826-2|via=pubs.rsc.org |editor-last1=Koch |editor-first1=Norbert }}</ref> ''[[Electro-optics]]'' is often erroneously used as a synonym, but is a wider branch of [[physics]] that concerns all interactions between light and [[electric field]]s, regardless of whether they form part of an electronic device. Optoelectronics is based on the [[quantum mechanics|quantum mechanical]] effects of [[light]] on electronic materials, especially [[semiconductors]], sometimes in the presence of [[electric field]]s.<ref>{{Cite web|url=http://www.element-14.com/community/docs/DOC-22516/l/physics-and-technology--vishay-optoelectronics|archiveurl=http://arquivo.pt/wayback/20160516081725/http://www.element-14.com/community/docs/DOC-22516/l/physics-and-technology--vishay-optoelectronics|url-status=dead|title=Physics and Technology - Vishay Optoelectronics|archivedate=May 16, 2016}}</ref> * [[Photoelectric]] or [[photovoltaic]] effect, used in: ** [[photodiode]]s (including [[solar cell]]s) ** [[phototransistor]]s ** [[photomultiplier]]s ** [[optoisolator]]s ** [[integrated optical circuit]] (IOC) elements * [[Photoconductivity]], used in: ** [[photoresistor]]s ** [[photoconductive camera tube]]s ** [[charge-coupled imaging device]]s * [[Stimulated emission]], used in: ** injection [[laser diode]]s ** [[quantum cascade laser]]s * Lossev effect, or [[radiative recombination]], used in: ** [[light-emitting diode]]s or LED ** [[OLED]]s * [[Photoemission|Photoemissivity]], used in ** [[Phototube|photoemissive camera tube]] Important applications<ref>{{Cite web|url=http://www.element-14.com/community/docs/DOC-22930/l/optocoupler-application-examples|title=''Optocoupler Application Examples''}}</ref> of optoelectronics include: * [[Optocoupler]] * [[Optical-fiber communications]] == See also == {{div col|colwidth=30em}} * [[Electronics]] * [[Interconnect bottleneck]] * [[Liquid-crystal display]] * [[Non-radiative lifetime]] * [[OECC]] (OptoElectronics and Communications Conference) * [[Optical amplifier]] * [[Optical communication]] * [[Optical fiber]] * [[Optical interconnect]] * [[Opto-electronic oscillator]] * [[Parallel optical interface]] * [[Photoemission]] * [[Photoemission spectroscopy]] * [[Photovoltaic effect]] * [[Stimulated emission]] {{div col end}} ==References== {{Reflist}} == External links == * {{commons category-inline}} * [http://www.oida.org OIDA (Optoelectronics Industry Development Association)] {{Photonics}} {{Authority control}} [[Category:Optoelectronics| ]]
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