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Optical constants of ice from the ultraviolet to the microwave

Applied Optics · 1984 · Vol. 23(8) · pp. 1206–1206
Stephen G. Warren

Abstract

A compilation of the optical constants of ice Ih is made for temperatures within 60 K of the melting point. The imaginary part mim of the complex index of refraction m is obtained from measurements of spectral absorption coefficient; the real part mre is computed to be consistent with mim by use of known dispersion relations. The compilation of mim requires subjective interpolation in the near-ultraviolet and microwave, a temperature correction in the far-infrared, and a choice between two conflicting sources in the near-infrared. New measurements of the spectral absorption coefficient of pure ice are needed, at temperatures near the melting point, for 185–400-nm, 1.4–2.8-μm, 3.5–4.3-μm, 33–600-μm, and 1–100-mm wavelengths.

Cryospheric studies and observationsArctic and Antarctic ice dynamicsThermal Radiation and Cooling TechnologiesOpticsMicrowaveUltravioletMaterials scienceRemote sensingPhysicsComputer scienceTelecommunicationsGeology
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References
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