Changing optical properties of ZnO powder upon separate and sequential irradiation by electrons and protons with an energy of 100 keV

Author:

Mikhailov M.M.,Yuryev S.A.,Lapin A.N.,Karanskiy V.V.

Publisher

Elsevier BV

Subject

Instrumentation,Nuclear and High Energy Physics

Reference34 articles.

1. R.R. Brown, L.B. Fogdall, S.S. Cannaday, Electron-ultraviolet radiation effects on thermal control coatings, Editor(s): Jerry T. Bevans, Thermal Design Principles of Spacecraft and Entry Bodies, Academic Press, 1969, Pages 697-724, ISBN 9780123957351, DOI:10.1016/B978-0-12-395735-1.50040-1.

2. L. B. Fogdall, S. S. Cannaday, and R. R. Brobvn, “In Situ Effects of Protons and Solar Electromagnetic Energy on Thermal Contrd Coatings” in: Proc. of 3rd Annual Space Symposium, (I. E. S.) Seattle, Sept. 1968. https://ntrs.nasa.gov/search.jsp?R=19680061651.

3. In situ electron, proton, and ultra- violet radiation effects on thermal control coatings;Fogdall,1969

4. Spectral dependence of ultraviolet-induced degradation of coatings for spacecraft thermal control;Arvesen;Thermophys. Spec. Conf.,1967

5. John W. Lucas, Heat Transfer and Spacecraft Thermal Control, 1971, 661 p. DOI:10.2514/4.864988.

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1. Preparation of antistatic AZO/Al2O3-ZnO-Y2O3 composite thermal control coating and its study on electron-resistance radiation performance;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2022-05

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