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Multi-Instrumental Observations of Nonunderdense Meteor Trails

机译:Multi-Instrumental观测Nonunderdense流星轨迹

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Using data from the Sodankyl? Geophysical Observatory (67°220N, 26°380E, Finland) meteor camera from the whole year 2015, we identified and investigated 28 optical meteors with accompanying ionization trails unambiguously detected by the Sodankyl? Geophysical Observatory ionosonde, which sounded the ionosphere once per minute with frequency rising from 0.5 to 16 MHz. These ionosonde reflections were obtained from heights around 90 km. The electron line densities of the trails were found to be between 1014 and 10~(16) m~(-1), which characterize the trails as nonunderdense (i.e., transitional and overdense). The ionosonde reflections were observed for a few minutes, with decreasing maximal frequency of the return. During the first 250 s, for the trails with initial line density about (2-3) ·10~(15) m~(-1) the return frequency decreased with time corresponding to the diffusional expansion of cylindrical meteor trails, that is, f ~∝ t~(-γ), where the exponent γ = 0.5, whereas less dense trails decayed slower (γ ≈ 0.2) and more dense trails decayed faster (γ ≈ 1). In many cases the meteor events were accompanied by nonspecular long-lived detections using a colocated all-sky interferometric meteor radar with operating frequency 36.9 MHz. As a rule the meteor radar echo durations were longer than expected from diffusional expansion of cylindrical meteor trails and their amplitudes were highly variable. We suggest that the slower frequency decrease of the ionosonde echoes and the nonspecular long-lived meteor radar echoes might be associated with the presence of meteoric dust.
机译:使用数据从Sodankyl ?天文台(67°220 n, 380年26°e,芬兰)流星相机在整个2015年,我们确认和调查28光学流星伴随电离路径明确Sodankyl检测到的吗?ionosonde电离层的每一次分钟,从0.5上升至16兆赫频率。这些ionosonde反射获得高度约90公里。的痕迹被发现是在1014年10 ~ (16) m ~(1),它描述轨迹nonunderdense(即过渡和物质)。观察几个ionosonde反射分钟,降低最大频率回报。与最初的线密度(2 - 3)·10 ~ (15)m ~(1)返回频率随时间减少相应的扩散扩张圆柱形流星轨迹,即f ~∝t ~(-γ),指数γ= 0.5,而密度较低路径衰减较慢(γ≈0.2)和更密集小径衰变速度(γ≈1)。在许多情况下流星事件伴随着nonspecular长期使用托管的全天检测干涉流星雷达与操作36.9兆赫频率。回波时间长于预期扩散圆柱流星的扩张轨迹及其振幅是高度可变的。我们建议的频率下降越慢和nonspecular ionosonde的回声长寿的流星雷达回波与大气尘埃的存在有关。

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