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Processing of ceramics : = breakthro...
~
John Wiley & Sons, Inc.
Processing of ceramics : = breakthroughs in optical materials /
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Processing of ceramics :/ edited by Akio Ikesue.
Reminder of title:
breakthroughs in optical materials /
other author:
Ikesue, Akio,
Published:
Hoboken, NJ :Wiley, : c2021.,
Description:
xvi, 416 p. :ill. ; : 24 cm.;
Subject:
Transparent ceramics. -
ISBN:
9781119538707 :
Processing of ceramics : = breakthroughs in optical materials /
Processing of ceramics :
breakthroughs in optical materials /edited by Akio Ikesue. - Hoboken, NJ :Wiley,c2021. - xvi, 416 p. :ill. ;24 cm.
Includes bibliographical references and index.
"In the 1950's, Dr. R. L. Coble of MIT demonstrated that polycrystalline alumina ceramics can transmit light by using high purity raw materials and controlling the microstructure of ceramics. This technology has been applied to sodium discharge lamps, and today this technology is still widely used for lighting. However, the applications of ceramics to date was extremely limited due to insufficient optical quality. Nowadays optical ceramic offer a much wider range of uses such as in lenses, transmission flats, mirrors, and prisms--and active optics--for example laser gain media, frequency converters, polarizers, and adaptive optics. Manufacturing next generation optics have been and will continue to be enablers for enhancing the performance of advance laser, imaging, and spectroscopy systems"--
ISBN: 9781119538707 :NT5708
LCCN: 2021025389Subjects--Topical Terms:
1346009
Transparent ceramics.
LC Class. No.: QC378.5 / .P76 2021
Dewey Class. No.: 620.1/404295
Processing of ceramics : = breakthroughs in optical materials /
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breakthroughs in optical materials /
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edited by Akio Ikesue.
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Wiley,
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c2021.
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xvi, 416 p. :
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ill. ;
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24 cm.
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Includes bibliographical references and index.
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"In the 1950's, Dr. R. L. Coble of MIT demonstrated that polycrystalline alumina ceramics can transmit light by using high purity raw materials and controlling the microstructure of ceramics. This technology has been applied to sodium discharge lamps, and today this technology is still widely used for lighting. However, the applications of ceramics to date was extremely limited due to insufficient optical quality. Nowadays optical ceramic offer a much wider range of uses such as in lenses, transmission flats, mirrors, and prisms--and active optics--for example laser gain media, frequency converters, polarizers, and adaptive optics. Manufacturing next generation optics have been and will continue to be enablers for enhancing the performance of advance laser, imaging, and spectroscopy systems"--
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Provided by publisher.
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Transparent ceramics.
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1346009
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Optical materials
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Ikesue, Akio,
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1958-
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John Wiley & Sons, Inc.
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771854
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