N-2 triplet band systems and atomic oxygen in the dayglow

被引:34
作者
Broadfoot, AL [1 ]
Hatfield, DB [1 ]
Anderson, ER [1 ]
Stone, TC [1 ]
Sandel, BR [1 ]
Gardner, JA [1 ]
Murad, E [1 ]
Knecht, DJ [1 ]
Pike, CP [1 ]
Viereck, RA [1 ]
机构
[1] PHILLIPS LAB,GPID,PL,BEDFORD,MA 01731
来源
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS | 1997年 / 102卷 / A6期
关键词
D O I
10.1029/97JA00771
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
New spectrographic observations of the Earth's dayglow have been acquired by the Arizona Airglow Experiment (GLO) flown on the space shuttle. GLO is an imaging spectrograph that records simultaneous vertical profiles of prominent Earth limb emissions occurring at wavelengths between 115 and 900 nm. This study addresses the measured emissions from the N-2 triplet states (first positive, second positive, and Vegard-Kaplan band systems) and their excitation by the local photoelectron flux. The triplet state population distributions modeled for aurora by Cartwright [1978] are modified for dayglow conditions by changing to a photoelectron-flux energy distribution and including resonance scattering by the first positive system. Modeled and observed intensities are in excellent agreement, in contrast to the well-studied auroral case. This work concentrates on dayglow conditions at 200 km altitude near the subsolar point. Parameters to infer the local photoelectron flux from the emission band intensities are provided. Several atomic oxygen dayglow emission features were analyzed to complement the N-2 analysis. The photoelectron-excited O I(135.6, 777.4 nm) lines were found to be 3 to 4 times weaker than predicted while the O I(630.0, 844.6 nm) lines were in close agreement with the model prediction.
引用
收藏
页码:11567 / 11584
页数:18
相关论文
共 40 条
[1]  
Allen C. W., 1976, ASTROPHYSICAL QUANTI
[2]   THE ROLE OF INTERSYSTEM COLLISIONAL TRANSFER OF EXCITATION IN THE DETERMINATION OF N2 VIBRONIC LEVEL POPULATIONS - APPLICATION TO B'3-SIGMA-U-B3-PI-G BAND INTENSITY MEASUREMENTS [J].
BENESCH, W ;
FRAEDRICH, D .
JOURNAL OF CHEMICAL PHYSICS, 1984, 81 (12) :5367-5374
[3]  
BILITZA D, 1990, NDDSCWDCARS9022
[4]   RESONANCE SCATTERING BY N2+ [J].
BROADFOO.AL .
PLANETARY AND SPACE SCIENCE, 1967, 15 (12) :1801-&
[5]   EXCITATION OF N2 BAND SYSTEMS IN AURORA [J].
BROADFOOT, AL ;
HUNTEN, DM .
CANADIAN JOURNAL OF PHYSICS, 1964, 42 (06) :1212-&
[6]   PANCHROMATIC SPECTROGRAPH WITH SUPPORTING MONOCHROMATIC IMAGERS [J].
BROADFOOT, AL ;
SANDEL, BR ;
KNECHT, D ;
VIERECK, R ;
MURAD, E .
APPLIED OPTICS, 1992, 31 (16) :3083-3096
[7]   LIFETIME OF LOWEST EXCITED LEVEL OF N2 [J].
CARLETON, NP ;
OLDENBERG, O .
JOURNAL OF CHEMICAL PHYSICS, 1962, 36 (12) :3460-&
[8]   VIBRATIONAL POPULATIONS OF EXCITED-STATES OF N2 UNDER AURORAL CONDITIONS [J].
CARTWRIGHT, DC .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1978, 83 (NA2) :517-531
[9]   ELECTRON-IMPACT EXCITATION OF ELECTRONIC STATES OF N2 .2. INTEGRAL CROSS-SECTIONS AT INCIDENT ENERGIES FROM 10 TO 50 EV [J].
CARTWRIGHT, DC ;
TRAJMAR, S ;
CHUTJIAN, A ;
WILLIAMS, W .
PHYSICAL REVIEW A, 1977, 16 (03) :1041-1051
[10]   THE ULTRAVIOLET DAYGLOW AT SOLAR MAXIMUM .2. PHOTOMETER OBSERVATIONS OF N-2 2ND POSITIVE (0, 0) BAND EMISSION [J].
CONWAY, RR ;
CHRISTENSEN, AB .
JOURNAL OF GEOPHYSICAL RESEARCH-SPACE PHYSICS, 1985, 90 (NA7) :6601-6607