Open Access Paper
14 September 2015 Front Matter: Volume 9580
Abstract
This PDF file contains the front matter associated with SPIE Proceedings Volume 9580 including the Title Page, Copyright information, Table of Contents, Introduction, and Conference Committee listing.

The papers included in this volume were part of the technical conference cited on the cover and title page. Papers were selected and subject to review by the editors and conference program committee. Some conference presentations may not be available for publication. The papers published in these proceedings reflect the work and thoughts of the authors and are published herein as submitted. The publisher is not responsible for the validity of the information or for any outcomes resulting from reliance thereon.

Please use the following format to cite material from this book:

Author(s), “Title of Paper,” in Zoom Lenses V, edited by Ellis Betensky, Takanori Yamanashi, Proceedings of SPIE Vol. 9580 (SPIE, Bellingham, WA, 2015) Article CID Number.

ISSN: 0277-786X

ISBN: 9781628417463

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Paper Numbering: Proceedings of SPIE follow an e-First publication model, with papers published first online and then in print. Papers are published as they are submitted and meet publication criteria. A unique citation identifier (CID) number is assigned to each article at the time of the first publication. Utilization of CIDs allows articles to be fully citable as soon as they are published online, and connects the same identifier to all online, print, and electronic versions of the publication. SPIE uses a six-digit CID article numbering system in which:

  • The first four digits correspond to the SPIE volume number.

  • The last two digits indicate publication order within the volume using a Base 36 numbering system employing both numerals and letters. These two-number sets start with 00, 01, 02, 03, 04, 05, 06, 07, 08, 09, 0A, 0B … 0Z, followed by 10-1Z, 20-2Z, etc.

The CID Number appears on each page of the manuscript. The complete citation is used on the first page, and an abbreviated version on subsequent pages.

Authors

Numbers in the index correspond to the last two digits of the six-digit citation identifier (CID) article numbering system used in Proceedings of SPIE. The first four digits reflect the volume number. Base 36 numbering is employed for the last two digits and indicates the order of articles within the volume. Numbers start with 00, 01, 02, 03, 04, 05, 06, 07, 08, 09, 0A, 0B…0Z, followed by 10-1Z, 20-2Z, etc.

Bentley, Julie L., 06, 0D, 0E, 0G, 0L

Berman, Rebecca, 0D

Betensky, Ellis, 04

Brown, Nicolas S., 0L

Carmeli, Ran, 0C

Chen, Changchen, 0L

Corsetti, James A., 0D

Doering, D., 02

Fang, Kejia, 0D

Fang, Yi-Chin, 0N

Fenning, Eryn, 0D

Frayer, Daniel K., 08

Fuchs, U., 07

Gandara-Montano, Gustavo A., 06, 0L

Grüger, Heinrich, 0H

Guevara-Torres, Andres, 0L

Hagimori, Hitoshi, 0J

Hanft, M., 02

Herman, Eric, 0A

Jin, Boya, 0O

Jung, Hae Won, 0L

Kaufman, Morris I., 08

Lee, Gi-Bbeum, 0O

Lee, Ji-Hyeon, 0O

Leffler, Heather R., 08

Li, Heng, 0L

Liao, Wei-Hsiang, 0K

Malone, Robert M., 08

McCarthy, Peter, 06, 0D, 0E

McGillivray, Kevin D., 08

Meidinger, Alfred, 08

Milde, T., 02, 05

Miyake, Norio, 03

Mizuta, Masahiro, 03

Moore, Duncan T., 06, 0D, 0E

Nah, Changwoon, 0O

Nakayama, Hiroaki, 03

Nikolov, Daniel K., 0L

Nurishi, Ryuji, 0F

Ohuchi, Yumiko, 03

Olson, Craig, 0D

Phillips, David H., 08

Reimers, Jacob, 0L

Ren, Hongwen, 0O

Reshidko, Dmitry, 0C

Reshidko, Pavel, 0C

Rogers, John R., 09

Schmidt, Greg R., 0D

Shinada, Nobuhiro, 03

Su, Guo-Dung J., 0K

Trumper, Isaac, 0L

Usui, Fumiaki, 0F

Vella, Anthony, 0G, 0L

Visconti, Anthony J., 0D, 0E

Vizgaitis, Jay, 0B

Wakazono, Tsuyoshi, 0F

Wickenhagen, S., 07

Williams, Daniel J. L., 06, 0D, 0E

Xu, Di, 0L

Yabe, Akira, 0M

Yamanashi, Takanori, 0I

Yee, Anthony J., 06, 0D

Yen, Chih-Ta, 0N

Youngworth, Richard N., 0A

Zhao, Yang, 0D, 0E, 0L

Zhou, Zuowei, 0O

Zimmermann, T., 05

Conference Committee

Program Track Chairs

  • José Sasián, College of Optical Sciences, The University of Arizona (United States)

  • R. John Koshel, College of Optical Sciences, The University of Arizona (United States)

Conference Chairs

  • Ellis Betensky, Consultant (United States)

  • Takanori Yamanashi, Theta Optical LLC (United States)

Conference Program Committee

  • Robert M. Bates, FiveFocal LLC (United States)

  • Akira Fukushima, Konica Minolta Technology Center (Japan)

  • Irina L. Livshits, ITMO University (Russian Federation)

  • Iain A. Neil, ScotOptix (Switzerland)

  • Rung-Ywan Tsai, Industrial Technology Research Institute (Taiwan)

  • Wilhelm Ulrich, Carl Zeiss AG (Germany)

  • Akira Yabe, Consultant (Japan)

  • Richard N. Youngworth, Riyo-LLC (United States)

Session Chairs

  • 1 Special Session

    Ellis Betensky, Consultant (United States)

    Takanori Yamanashi, Theta Optical LLC (United States)

  • 2 Theory and Analysis

    Takanori Yamanashi, Theta Optical LLC (United States)

    Ellis Betensky, Consultant (United States)

  • 3 Applications I: Infrared

    Akira Yabe, Consultant (Japan)

  • 4 Applications II: Camera Lens

    Ellis Betensky, Consultant (United States)

  • 5 Applications III: Camera Lens

    Takanori Yamanashi, Theta Optical LLC (United States)

Introduction

This volume contains the proceedings of Zoom Lenses V, the fifth SPIE conference on zoom lenses.

It was only about 50 years ago that optimization techniques were first applied to zoom lens design. During this time, computer software for the design of conventional lenses has progressed to the level that even the starting point can be determined. Papers presented at the Zoom Lenses V conference demonstrate that zoom lens design software is now effective in selecting promising starting points. The authors suggest further developments can be expected.

Applications for zoom lenses are now considerably broader than those of the past. These papers describe new designs for reflective and decentered systems, imaging in multiple spectral bands, and collimation. The papers also discuss special problems associated with manufacturing tolerances.

Although the computer software has advanced, the value of classical aberration theory has not been abandoned. Several authors show the usefulness of classical aberration theory coupled with thin lens design techniques not only for providing insight and understanding, but to be used in the design optimization itself. Authors also demonstrate the importance of determining the optimum aperture stop location in the initial design stages.

The papers are organized into five different sessions: Special; Theory and Analysis; Applications I - Infrared; Applications II - Camera Lens; and Applications III – Camera Lens.

Ellis Betensky

Takanori Yamanashi

© (2015) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
"Front Matter: Volume 9580", Proc. SPIE 9580, Zoom Lenses V, 958001 (14 September 2015); https://doi.org/10.1117/12.2208533
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KEYWORDS
Zoom lenses

Lens design

Cameras

Imaging systems

Current controlled current source

Optical design

Aspheric optics

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