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Titlebook: Solid State Luminescence; Theory, materials an A. H. Kitai Book 1993 Chapman & Hall 1993 diodes.epitaxy.material.semiconductor.thin films

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书目名称Solid State Luminescence
副标题Theory, materials an
编辑A. H. Kitai
视频video
图书封面Titlebook: Solid State Luminescence; Theory, materials an A. H. Kitai Book 1993 Chapman & Hall 1993 diodes.epitaxy.material.semiconductor.thin films
描述Historically, black body radiation in the tungsten filament lamp was our primary industrial means for producing ‘artificial‘ light, as it replaced gas lamps. Solid state luminescent devices for applications ranging from lamps to displays have proliferated since then, particularly owing to the develop­ ment of semiconductors and phosphors. Our lighting products are now mostly phosphor based and this ‘cold light‘ is replacing an increasing fraction of tungsten filament lamps. Even light emitting diodes now chal­ lenge such lamps for automotive brake lights. In the area of information displays, cathode ray tube phosphors have proved themselves to be outstandingly efficient light emitters with excellent colour capability. The current push for flat panel displays is quite intense, and much confusion exists as to where development and commercialization will occur most rapidly, but with the need for colour, it is now apparent that solid state luminescence will play a primary role, as gas phase plasma displays do not conveniently permit colour at the high resolution needed today. The long term challenge to develop electroluminescent displays continues, and high performance fluorescent lamp
出版日期Book 1993
关键词diodes; epitaxy; material; semiconductor; thin films
版次1
doihttps://doi.org/10.1007/978-94-011-1522-3
isbn_softcover978-94-010-4664-0
isbn_ebook978-94-011-1522-3
copyrightChapman & Hall 1993
The information of publication is updating

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Luminescence spectroscopy,lity and lifetime of free carriers and give rise to both transitions connected with luminescence emission and radiationless transitions. While luminescence results from radiating relaxation, a considerable amount of the relaxation usually occurs within nonradiative processes.
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Lamp phosphors, or as energy converters (scatterers) of electromagnetic (EM) energy into EM energy of different wavelength is treated in other chapters of the present book. In what follows we shall focus on luminescent materials in powder form (phosphors) as wavelength converters of EM radiation produced in electr
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