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A Cryogenic Infrared Calibration Target

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arxiv 1403.6667 v1 pith:6LFG2R3K submitted 2014-03-26 physics.ins-det astro-ph.IMphysics.optics

A Cryogenic Infrared Calibration Target

classification physics.ins-det astro-ph.IMphysics.optics
keywords targetcalibrationcryogenicdescribedpresentedthermalabsorptionabsorptive
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

A compact cryogenic calibration target is presented that has a peak diffuse reflectance, $R \le 0.003$, from $800-4,800\,{\rm cm}^{-1}$ $(12-2\,\mu$m). Upon expanding the spectral range under consideration to $400-10,000\,{\rm cm}^{-1}$ $(25-1\,\mu$m) the observed performance gracefully degrades to $R \le 0.02$ at the band edges. In the implementation described, a high-thermal-conductivity metallic substrate is textured with a pyramidal tiling and subsequently coated with a thin lossy dielectric coating that enables high absorption and thermal uniformity across the target. The resulting target assembly is lightweight, has a low-geometric profile, and has survived repeated thermal cycling from room temperature to $\sim4\,$K. Basic design considerations, governing equations, and test data for realizing the structure described are provided. The optical properties of selected absorptive materials -- Acktar Fractal Black, Aeroglaze Z306, and Stycast 2850 FT epoxy loaded with stainless steel powder -- are characterized and presented.

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