Abstract
Abstract. Infrared spectroscopic observations have shown that crystalline ammonium nitrate (AN) particles are an abundant constituent of the upper tropospheric aerosol layer which is formed during the Asian summer monsoon period, the so-called Asian Tropopause Aerosol Layer (ATAL). At
upper tropospheric temperatures, the thermodynamically stable phase of AN is
different from that at 298 K, meaning that presently available
room-temperature optical constants of AN, that is, the real and imaginary
parts of the complex refractive index, cannot be applied for the
quantitative analysis of these infrared measurements. In this work, we have
retrieved the first low-temperature data set of optical constants for
crystalline AN in the 800–6000 cm−1 wavenumber range with a spectral resolution of 0.5 cm−1. The
optical constants were iteratively derived from an infrared extinction
spectrum of 1 µm sized AN particles suspended in a cloud chamber at 223 K. The uncertainties of the new data set were carefully assessed in a comprehensive sensitivity analysis. We show that our data accurately fit
aircraft-borne infrared measurements of ammonium nitrate particles in the
ATAL.
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