2000AIP conference proceedingsRequires access

The design of broadband multilayer optics using simulated annealing

J. M. Tait

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Abstract

A technique is presented for the broadband design optimization of multilayered reflective optic coatings. The optimization algorithm converges onto a stable configuration giving a high reflectivity for the wavelength range 10–12 nm and 13–16 nm. The silicon absorption edge at 12.4 nm limits the performance over the whole 10–16 nm range.

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What this paper is about

A technique is presented for the broadband design optimization of multilayered reflective optic coatings. The optimization algorithm converges onto a stable configuration giving a high reflectivity for the wavelength range 10–12 nm and 13–16 nm. The silicon absorption edge at 12.4 nm limits the performance over the whole 10–16 nm range.

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Available abstract

A technique is presented for the broadband design optimization of multilayered reflective optic coatings. The optimization algorithm converges onto a stable configuration giving a high reflectivity for the wavelength range 10–12 nm and 13–16 nm. The silicon absorption edge at 12.4 nm limits the performance over the whole 10–16 nm range.

Key concepts: Broadband, Materials science, Optics, Simulated annealing, Silicon, Optoelectronics, Annealing (glass), Wavelength

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