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High resolution absorption cross-section measurements of the Schumann-Runge bands of O2 by VUV Fourier transform spectroscopy
Authors:T. Matsui  A.S.-C. Cheung  K. Yoshino  W.H. Parkinson  J.E. Murray  T. Imajo
Affiliation:a Tsukuba University, Tsukuba 1-1-1, 305-8573, Japan
b The University of Hong Kong, Hong Kong
c Harvard-Smithsonian Center for Astrophysics, 60 Garden Street, Cambridge, MA 02138, USA
d Blackett Laboratory, Imperial College of Science, Technology, and Medicine, London SW7-2BZ, UK
e Photon Factory, KEK, Oho, Tsukuba, Ibaraki 305-0801, Japan
f Japan Women’s University, Tokyo 112-8681, Japan
Abstract:
The photoabsorption spectrum of the O2 Schumann-Runge bands was measured with resolution comparable to the Doppler widths by using the VUV Fourier transform spectrometer from Imperial College, London, combined with synchrotron radiation as a continuum light source at the Photon Factory, KEK, Japan. The analysis of the (12,0)-(17,0) bands of the Schumann-Runge system provides accurate rotational line positions as well as the line intensities from 185 to 175 nm. Molecular constants of the View the MathML source levels of the View the MathML source state have been determined. The (v,0) band oscillator strengths were determined as 2.38, 2.62, 2.70, 2.66, 2.40, and 2.12×10−5 for the bands from v=12 to 17, respectively.
Keywords:
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