Orbital barium CRRES injection — Effective source of ionospheric wavelike disturbances
Identifieur interne : 000140 ( Main/Exploration ); précédent : 000139; suivant : 000141Orbital barium CRRES injection — Effective source of ionospheric wavelike disturbances
Auteurs : Yu. Ya. Ruzhin [Russie] ; V. N. Oraevsky [Russie] ; A. Kh. Depueva [Russie] ; H. Perez [Cuba] ; L. Palasio [Cuba]Source :
- Advances in Space Research [ 0273-1177 ] ; 1995.
Abstract
Spectral analysis of artificial wavelike disturbances (WD) in ionospheric parameters is presented. The sources of WD are barium clouds injections in CRRES perigee experiments. Plasma concentration pulsations are found in the ionospheric F2 layer maximum over Havana (Cuba) at distances 1500–2500 km from the barium injection. It was found that for the spectral component with 10 min period, the delay (relative to injection moment) corresponded to WD propagation velocity in 323–390 m/s band and depended on the specific injection conditions. It was shown that in every experiment the WD effective propagation velocity in the terminator region correlated with the sunlit part of the trajectory from the injection point to Havana. When comparing this WD type with WD's of other origins (from earthquakes, high-altitude explosions and solar terminator), it was shown that purposeful injection in the ionosphere of even a small barium quantity with orbital velocity in terminator region might be the effective means for generation or amplification of natural WD.
Url:
DOI: 10.1016/0273-1177(95)00030-I
Affiliations:
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<front><div type="abstract" xml:lang="en">Spectral analysis of artificial wavelike disturbances (WD) in ionospheric parameters is presented. The sources of WD are barium clouds injections in CRRES perigee experiments. Plasma concentration pulsations are found in the ionospheric F2 layer maximum over Havana (Cuba) at distances 1500–2500 km from the barium injection. It was found that for the spectral component with 10 min period, the delay (relative to injection moment) corresponded to WD propagation velocity in 323–390 m/s band and depended on the specific injection conditions. It was shown that in every experiment the WD effective propagation velocity in the terminator region correlated with the sunlit part of the trajectory from the injection point to Havana. When comparing this WD type with WD's of other origins (from earthquakes, high-altitude explosions and solar terminator), it was shown that purposeful injection in the ionosphere of even a small barium quantity with orbital velocity in terminator region might be the effective means for generation or amplification of natural WD.</div>
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