New glasses for optics and optoelectronics

New glasses for optics and optoelectronics
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DOI:
10.1117/12.47838
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发表时间:
1991-03
期刊:
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影响因子:
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通讯作者:
Hans F. Morian
Hans F. Morian
中科院分区:
其他
文献类型:
--
作者:
Hans F. Morian

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光学玻璃由于其物理性质的高度均匀性,以及能够定制关键特性以满足所需性能的能力,在光学和光电子学的广泛领域中找到了新的应用。在光学玻璃领域,总体发展目标是:用于消色差校正的具有反常部分色散特性的光学玻璃;减轻重量的玻璃,即所谓的轻质玻璃;提高紫外线透过率的玻璃;用于深紫外线应用的新型玻璃;直径高达1555 mm的光学玻璃;高度预应力窗口直径。930 mm的气泡室;将介绍最新的结果。针对放射性环境和空间应用,已经开发了各种稳定的光学玻璃。这些玻璃已经用电子、质子、中子和伽马辐射进行了测试。切伦科夫计数器和闪烁计数器中有用于粒子研究的特殊玻璃。半导体掺杂玻璃中的非线性光学效应正在研究中。
Optical glasses, due to their high homogeneity regarding physical properties, and the ability to tailor key characteristics to meet the desired performance, find new applications in the wide fields of optics and optoelectronics. In the optical glass field the general development goals are: optical glasses with anomalous partial dispersion characteristics for apochromatic color corrections; glasses with reduced weight, so called lightweight glasses; glasses with improved UV- transmittance; new glass types for deep UV-applications; optical glasses with high homogeneity in diameter up to 1555 mm; highly prestressed windows dia. 930 mm for bubble chambers; the latest results will be presented. For radioactive environments and for space applications a variety of stabilized optical glasses have been developed. These glasses have been testes with electron-, proton-, neutron- and gamma radiation. Special glasses exist for the use in Cerenkov and Scintillation counters for particle research. Nonlinear optical effects in semiconductor doped glasses are under investigation.