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On the performance limits of coatings for gravitational wave detectors made of alternating layers of two materials

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arxiv 1904.08250 v4 pith:RBR3UJSS submitted 2019-04-16 astro-ph.IM physics.optics

On the performance limits of coatings for gravitational wave detectors made of alternating layers of two materials

classification astro-ph.IM physics.optics
keywords coatingdesignnoisealgorithmalternatingcoatingscurvedetectors
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The coating design for mirrors used in interferometric detectors of gravitational waves currently consists of stacks of two alternating dielectric materials with different refractive indexes. In order to explore the performance limits of such coatings, we have formulated and solved the design problem as a multiobjective optimization problem consisting of the minimization of both coating transmittance and thermal noise. An algorithm of global optimization (Borg MOEA) has been used without any a priori assumption on the number and thicknesses of the layers in the coating. The algorithm yields to a Pareto tradeoff boundary exhibiting a continuous, decreasing and non convex (bump-like) profile, bounded from below by an exponential curve which can be written in explicit closed form in the transmittance-noise plane. The lower bound curve has the same expression of the relation between transmittance and noise for the quarter wavelength design where the noise coefficient of the high refractive index material assumes a smaller equivalent value. An application of this result allowing to reduce the computational burden of the search procedure is reported and discussed.

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