On the Representativeness of Proton Radiation Resistance Tests on Optical Coatings for Interplanetary Missions

Author:

Sytchkova Anna1ORCID,Protopapa Maria Lucia2ORCID,Olivero Paolo3ORCID,Shen Zicai4ORCID,Wang Yanzhi5

Affiliation:

1. ENEA Optical Coatings Group, TERIN-DEC-CCT, C.R. Casaccia, via Anguillarese 301, 00123 Rome, Italy

2. ENEA SSPT-PROMAS-MATAS, C.R. Brindisi, SS 7 Appia Km 706, 72100 Brindisi, Italy

3. Physics Department, University of Torino, via P. Giuria 1, 10125 Torino, Italy

4. Beijing Institute of Spacecraft Environment Engineering, Beijing 100094, China

5. Laboratory of Thin Film Optics, Shanghai Institute of Optics and Fine Mechanics, No. 390 Qinghe Road, Jiading District, Shanghai 201800, China

Abstract

Optical instrumentation used in space normally employs optical coatings. Future interplanetary space missions will be characterized by ever longer stays in environmental conditions where low energy protons represent one of the main types of radiation impacting the coating longevity and performance. To ensure the reliability of coated optics, environmental resistance tests should be accurately planned to be representative for a mission. To this end, the existing standards for coating tests and the test results interpretation have been constantly improved. In this study, we analyze the relevant standards of the European Space Agency (ESA) and of the Chinese Space Agency (CSA) for testing coated optics for interplanetary missions, and in particular for the missions at the Lagrange points. We focus in particular on the applicability of these standards and hence on their possible refinement when specifically implemented to the optical thin films and coatings. We proceed with the development of a methodology for reliable interpretation of the proton irradiation tests for the optical coatings for interplanetary missions, first briefly overviewing the existing tools which allow for space environment simulation and hence deriving the test conditions for the Lagrange points. Furthermore, we apply the approach to testing of aluminum oxide optical coatings for applications in the visible spectral range, concluding on the representativeness of the proposed approach and on possible refinement of the existing standards for coating tests when they are specifically developed for optical applications.

Funder

Italian Ministry for University and Research

Publisher

MDPI AG

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5. (2024, May 15). Available online: https://www.unoosa.org/documents/pdf/copuos/2023/TPs/ILRS_presentation20230529_.pdf.

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