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  Development and manufacturing of SPO X-ray mirrors

Landgraf, B., Collon, M. J., Vacanti, G., Barriere, N. M., Gunther, R., Vervest, M., et al. (2019). Development and manufacturing of SPO X-ray mirrors. In S. L. O'Dell, & G. Pareschi (Eds.), Optics for EUV, X-Ray, and Gamma-Ray Astronomy IX. doi:10.1117/12.2530941.

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 Creators:
Landgraf, Boris, Author
Collon, Maximilien J., Author
Vacanti, Giuseppe, Author
Barriere, Nicolas M., Author
Gunther, Ramses, Author
Vervest, Mark, Author
Voruz, Luc, Author
Verhoeckx, Sjoerd, Author
Babić, Ljubiša, Author
Keek, Laurens, Author
Girou, David, Author
Okma, Ben, Author
Beijersbergen, Marco W., Author
Bavdaz, Marcos, Author
Wille, Eric, Author
Fransen, Sebastiaan, Author
Shortt, Brian, Author
Ferreira, Ivo, Author
Haneveld, Jeroen, Author
Koelewijn, Arenda, Author
Start, Ronald, AuthorWijnperle, Maurice, AuthorLankwarden, Jan-Joost, Authorvan Baren, Coen, AuthorHieltjes, Paul, Authorden Herder, Jan Willem, AuthorBurwitz, Vadim1, Author           Pareschi, Giovanni, AuthorMassahi, Sonny, AuthorFerreira, Desiree Della Monica, AuthorChristensen, Finn E., AuthorValsecchi, Giuseppe, AuthorOliver, Paul, AuthorChequer, Ian, AuthorBall, Kevin, Author more..
Affiliations:
1High Energy Astrophysics, MPI for Extraterrestrial Physics, Max Planck Society, ou_159890              

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 Abstract: The Silicon Pore Optics (SPO) technology has been established as a new type of X-ray optics enabling future X-ray observatories such as ATHENA. SPO is being developed at cosine together with the European Space Agency (ESA) and academic as well as industrial partners. The SPO modules are lightweight, yet stiff, high-resolution X-ray optics, allowing missions to reach a large effective area of several square meters. These properties of the optics are mainly linked to the mirror plates consisting of mono-crystalline silicon. Silicon is rigid, has a relatively low density, a very good thermal conductivity and excellent surface finish, both in terms of figure and surface roughness. For Athena, a large number of mirror plates is required, around 100,000 for the nominal configuration. With the technology spin-in from the semiconductor industry, mass production processes can be employed to manufacture rectangular shapes SPO mirror plates in high quality, large quantity and at low cost. Within the last years, several aspects of the SPO mirror plate have been reviewed and undergone further developments in terms of effective area, intrinsic behavior of the mirror plates and mass production capability. In view of flight model production, a second source of mirror plates has been added in addition to the first plate supplier. The paper will provide an overview of most recent plate design, metrology and production developments.

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 Dates: 2019-10-30
 Publication Status: Published online
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 Rev. Type: -
 Identifiers: DOI: 10.1117/12.2530941
Other: LOCALID: 3241910
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Title: SPIE OPTICAL ENGINEERING + APPLICATIONS
Place of Event: San Diego, CA
Start-/End Date: 2019-08-13 - 2019-08-15

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Title: Optics for EUV, X-Ray, and Gamma-Ray Astronomy IX
Source Genre: Proceedings
 Creator(s):
O'Dell, Stephen L., Editor
Pareschi, Giovanni , Editor
Affiliations:
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Publ. Info: -
Pages: - Volume / Issue: 11119 Sequence Number: 111190E Start / End Page: - Identifier: -

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Title: Proceedings of SPIE
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Publ. Info: SPIE-INT SOC OPTICAL ENGINEERING
Pages: - Volume / Issue: - Sequence Number: - Start / End Page: - Identifier: ISSN: 0277-786X