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Microtechnology / Transducers / Deformable mirror / Optics / Electrical engineering / Telescopes / Microelectromechanical systems / Mirror / Piezoelectricity / Materials science / Electromagnetism / Physics


Ultralightweight deformable mirrors Keith Patterson* and Sergio Pellegrino Graduate Aerospace Laboratories, California Institute of Technology, 1200 E California Blvd., Pasadena, California 91125, USA *Corresponding auth
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Document Date: 2014-05-14 13:36:42


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File Size: 1,27 MB

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Company

Sandia National Laboratories / APPLIED OPTICS 5335 Steel / Boston Micromachine Corp. / Ductile / OKO Technologies / /

Currency

USD / /

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Event

Product Issues / /

Facility

California Institute of Technology / America Institute of Space Studies / /

IndustryTerm

metal / metal film / silicon technology / uniform metal surface / least squares solution / launch packaging solutions / ultralightweight mirror technology / metal coating / manufacturing scheme / certain mirror applications / steel spheres / manufacturing techniques / electronics / high-temperature processing / active hybrid mirror technology / lightweight solution / linear least squares solution / space applications / active space telescope systems / low-temperature processing steps / mirror technologies / software packages / low-temperature processing / microfabrication technologies / fabrication technologies / /

Organization

California Institute of Technology / Optical Society of America Institute of Space Studies / Optical Society of America OCIS / New Horizons / /

Person

Stoney / Keith Patterson / /

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Position

*Corresponding author / /

Product

spot / /

ProgrammingLanguage

MATLAB / K / /

Technology

ultralightweight mirror technology / laser / microfabrication technologies / MEMS / x-ray / silicon technology / dielectric / mirror technologies / relevant mirror technologies / existing fabrication technologies / MEMS technology / active hybrid mirror technology / photolithography / /

URL

http /

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