Proceedings of SPIE- The International Society for Optical Engineering Volume 932·Ultraviolet Technology 🔍
Robert E. Huffman, chair/editor; sponsored by SPIE--the International Society for Optical Engineering; cooperating organizations, Applied Optics Laboratory/New Mexico State University ... [et al.]
the Society of Photo-Optical Instrumentation Engineers·Washington, Proceedings of SPIE--the International Society for Optical Engineering -- v. 932, Bellingham, Wash., USA, Washington State, 1988
英语 [en] · PDF · 23.0MB · 1988 · 📗 未知类型的图书 · 🚀/duxiu/ia · Save
描述
I express our gratitude to the committee and to the authors whose papers are contained herein.
I express our gratitude to the committee and to the authors whose papers are contained herein.
I express our gratitude to the committee and to the authors whose papers are contained herein.
备选标题
Ultraviolet Technology II: Proceedings of Spie-The International Society for Optical Engineering, Vol 932 (Proceedings of Spie--The International Society for Optical E)
备选标题
Proceedings of SPIE-The International Society for Optical Engineering Volume 932·Ultraviolet Technology II
备选标题
International Conference on Thermal Infrared Sensing for Diagnostics and Control (Thermosense X)
备选标题
Ultraviolet Technology Ii: 4-5 April 1988, Orlando, Florida Ultraviolet Technology 2
备选标题
5-8 April 1988, Orlando, Florida
备选标题
Ultraviolet technology two
备选作者
Robert E Huffman; Society of Photo-optical Instrumentation Engineers (U.S.); Technical Symposium on Optics, Electro-Optics, and Sensors; Ultraviolet Technology
备选作者
Robert E Huffman; Society of Photo-optical Instrumentation Engineers.; New Mexico State University. Applied Optics Laboratory.; et al
备选作者
Huffman, Robert E., 1931-; Society of Photo-optical Instrumentation Engineers; New Mexico State University. Applied Optics Laboratory
备用出版商
SPIE-International Society for Optical Engine
备用出版商
Bellingham, Wash., USA: SPIE
备用版本
Proceedings of SPIE - the International Society for Optical Engineering, Bellingham, Washington, 1988
备用版本
United States, United States of America
备用版本
Volume 932, 1988
备用版本
August 1988
元数据中的注释
cut off text due to tight binding
元数据中的注释
Includes bibliographies and index.
元数据中的注释
contributor: 浙江大学
元数据中的注释
format: Image/Djvu(.djvu)
元数据中的注释
unit_name: 浙江大学
元数据中的注释
Type: 英文图书
元数据中的注释
Bookmarks:
1. (p1) SESSION 1 APPLICATIONS I
1.1. (p2) The Chemical physics of ultraviolet rocket plume signatures
1.2. (p24) Determination of daytime midlatitude electron density profiles from satellite UV and in-situ data
1.3. (p30) Organizing and utilizing the imaging and spectral data from Polar BEAR
1.4. (p36) The Earth from space at 2500-3000 A;brightness and camera design
2. (p41) SESSION 2 FLIGHT INSTRUMENTS
2.1. (p42) Application of CCD detectors to UV imaging from a spinning satellite
2.2. (p50) Middle atmosphere high resolution spectrograph
2.3. (p61) Far UV wide-field imaging and photometry:Spartan-202 Mark II far-UV camera
2.4. (p87) The Spartan-281 far-UV imaging spectrograph
3. (p113) SESSION 3 DETECTORSⅠ
3.1. (p114) Very large format pulse-counting UV detectors
3.2. (p119) Development of the RAIDS extreme UV wedge and strip detector
3.3. (p124) Performance characteristics of a new helical-channel microchannel plate
3.4. (p132) Spatial frequency response of proximity focused image tubes in the near UV
3.5. (p139) Fabrication of MgF2 and LiF windows for the Hubble Space Telescope Imaging Spectrograph
4. (p147) SESSION 4 COMPONENTS
4.1. (p148) Optical filters for high resolution UV imaging systems
4.2. (p153) Stable,high quantum efficiency silicon photodiodes for vacuum-UV applications
4.3. (p161) EUV properties of two diffraction gratings
5. (p169) SESSION 5 APPLICATIONS Ⅱ
5.1. (p170) Synthetic dayglow spectra and the Rayleigh scattering background from the far UV to the visible
5.2. (p179) UV spectra in the diffuse auroral region
5.3. (p190) EUV imaging of the ionosphere from space
6. (p203) SESSION 6 SENSORS
6.1. (p204) Quantitative image analysis of UV rocket plumes and laboratory images
6.2. (p213) IMAPS:high resolution,echelle spectrograph to record far-UV spectra of stars from sounding rockets
6.3. (p230) Intensified UV imager for space applications
6.4. (p236) Position sensitivity of MAMA detectors
7. (p245) SESSION 7 TECHNIQUES
7.1. (p246) Image motion compensation using a photon-counting UV/visible detector
7.2. (p252) Interpretation of UV radiometric measurements of spectrally nonuniform sources
7.3. (p258) Spatial dependence of transmission of UV radiation through the atmosphere
7.4. (p265) UV/ozone removal of contaminants in spacecraft environments
7.5. (p271) UV imaging of hydrogen flames
8. (p279) SESSION 8 DETECTORS Ⅱ
8.1. (p280) Decoding techniques for fine-fine geometry multianode microchannel arrays
8.2. (p291) Absolute UV irradiance calibration of the solar UV spectral irradiance monitor(SUSIM)instruments
8.3. (p297) Spartan-282:high resolution airglow/aurora spectrograph(HIRAAS)
8.4. (p305) Thinned backside illuminated CCDs for UV imaging
1. (p1) SESSION 1 APPLICATIONS I
1.1. (p2) The Chemical physics of ultraviolet rocket plume signatures
1.2. (p24) Determination of daytime midlatitude electron density profiles from satellite UV and in-situ data
1.3. (p30) Organizing and utilizing the imaging and spectral data from Polar BEAR
1.4. (p36) The Earth from space at 2500-3000 A;brightness and camera design
2. (p41) SESSION 2 FLIGHT INSTRUMENTS
2.1. (p42) Application of CCD detectors to UV imaging from a spinning satellite
2.2. (p50) Middle atmosphere high resolution spectrograph
2.3. (p61) Far UV wide-field imaging and photometry:Spartan-202 Mark II far-UV camera
2.4. (p87) The Spartan-281 far-UV imaging spectrograph
3. (p113) SESSION 3 DETECTORSⅠ
3.1. (p114) Very large format pulse-counting UV detectors
3.2. (p119) Development of the RAIDS extreme UV wedge and strip detector
3.3. (p124) Performance characteristics of a new helical-channel microchannel plate
3.4. (p132) Spatial frequency response of proximity focused image tubes in the near UV
3.5. (p139) Fabrication of MgF2 and LiF windows for the Hubble Space Telescope Imaging Spectrograph
4. (p147) SESSION 4 COMPONENTS
4.1. (p148) Optical filters for high resolution UV imaging systems
4.2. (p153) Stable,high quantum efficiency silicon photodiodes for vacuum-UV applications
4.3. (p161) EUV properties of two diffraction gratings
5. (p169) SESSION 5 APPLICATIONS Ⅱ
5.1. (p170) Synthetic dayglow spectra and the Rayleigh scattering background from the far UV to the visible
5.2. (p179) UV spectra in the diffuse auroral region
5.3. (p190) EUV imaging of the ionosphere from space
6. (p203) SESSION 6 SENSORS
6.1. (p204) Quantitative image analysis of UV rocket plumes and laboratory images
6.2. (p213) IMAPS:high resolution,echelle spectrograph to record far-UV spectra of stars from sounding rockets
6.3. (p230) Intensified UV imager for space applications
6.4. (p236) Position sensitivity of MAMA detectors
7. (p245) SESSION 7 TECHNIQUES
7.1. (p246) Image motion compensation using a photon-counting UV/visible detector
7.2. (p252) Interpretation of UV radiometric measurements of spectrally nonuniform sources
7.3. (p258) Spatial dependence of transmission of UV radiation through the atmosphere
7.4. (p265) UV/ozone removal of contaminants in spacecraft environments
7.5. (p271) UV imaging of hydrogen flames
8. (p279) SESSION 8 DETECTORS Ⅱ
8.1. (p280) Decoding techniques for fine-fine geometry multianode microchannel arrays
8.2. (p291) Absolute UV irradiance calibration of the solar UV spectral irradiance monitor(SUSIM)instruments
8.3. (p297) Spartan-282:high resolution airglow/aurora spectrograph(HIRAAS)
8.4. (p305) Thinned backside illuminated CCDs for UV imaging
备用描述
Robert E. Huffman, Chair/editor ; Sponsored By Spie--the International Society For Optical Engineering ; Cooperating Organizations, Applied Optics Laboratory/new Mexico State University ... [et Al.]. Includes Bibliographies And Index.
备用描述
vi, 313 p. : 28 cm. --
Includes bibliographies and index
Includes bibliographies and index
开源日期
2024-07-01
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