Collision-Induced Infrared Absorption by Molecular Hydrogen Pairs at Thousands of Kelvin

Author:

Li Xiaoping1,Hunt Katharine L. C.1,Wang Fei2,Abel Martin2ORCID,Frommhold Lothar2

Affiliation:

1. Department of Chemistry, Michigan State University, East Lansing, MI 48824, USA

2. Physics Department, University of Texas, Austin, TX 78712-1081, USA

Abstract

Collision-induced absorption by hydrogen and helium in the stellar atmospheres of cool white dwarfs causes the emission spectra to differ significantly from the expected blackbody spectra of the cores. For detailed modeling of radiative processes at temperatures up to 7000 K, the existing H2H2 induced dipole and potential energy surfaces of high quality must be supplemented by calculations with the H2 bonds stretched or compressed far from the equilibrium length. In this work, we describe new dipole and energy surfaces, based on more than 20 000 ab initio calculations for H2H2. Our results agree well with previous ab initio work (where those data exist); the calculated rototranslational absorption spectrum at 297.5 K matches experiment similarly well. We further report the calculated absorption spectra of H2H2 for frequencies from the far infrared to 20 000 cm1, at temperatures of 600 K, 1000 K, and 2000 K, for which there are no experimental data.

Funder

National Natural Science Foundation of China

Publisher

Hindawi Limited

Subject

Rehabilitation,Physical Therapy, Sports Therapy and Rehabilitation,General Medicine

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