A very young τ-Herculid meteor cluster observed during a 2022 shower outburst

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-03-19 DOI:10.1051/0004-6361/202553764
P. Koten, D. Čapek, J. Tóth, L. Shrbený, J. Borovička, J. Vaubaillon, F. Zander, D. Buttsworth, S. Loehle
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Abstract

Context. To date, only a few meteor clusters have been instrumentally recorded. This means that every new detection is an important contribution to the understanding of these phenomena, which are thought to be evidence of the meteoroid fragmentation in the Solar System.Aims. On May 31 2022 at 6:48:55 UT, a cluster consisting of 52 meteors was detected within 8.5 seconds during a predicted outburst of the τ-Herculid meteor shower. The aim of this paper is to reconstruct the atmospheric trajectories of the meteors and use the collected information to deduce the origin of the cluster.Methods. The meteors were recorded by two video cameras during an airborne campaign. Due to only the single station observation, their trajectories were estimated under the assumption that they belonged to the meteor shower. The mutual positions of the fragments, together with their photometric masses, were used to model the processes leading to the formation of the cluster.Results. The physical properties of the cluster meteors are very similar to the properties of the τ-Herculids. This finding confirms the assumption of the shower membership used for the computation of atmospheric trajectories. This is the third cluster that we have studied in detail, but the first one in which we do not see the mass separation of the particles. The cluster is probably less than 2.5 days old, which is too short for such a complete mass separation. Such an age would imply disintegration due to thermal stress. However, we cannot rule out an age of only a few hours, which would allow for other fragmentation mechanisms.
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一个非常年轻的τ-大力神星团在2022年的一次星雨爆发中被观测到
上下文。到目前为止,只有少数流星团被仪器记录下来。这意味着每一次新的探测都是对理解这些现象的重要贡献,这些现象被认为是太阳系流星体破碎的证据。在2022年5月31日6:48:55 UT,在预测的τ-Herculid流星雨爆发期间,在8.5秒内检测到一个由52颗流星组成的星团。本文的目的是重建流星的大气轨迹,并利用收集到的信息推断星团的起源。这些流星是在一次空降行动中由两台摄像机记录下来的。由于只有单站观测,它们的轨迹是在假设它们属于流星雨的情况下估计的。这些碎片的相互位置,连同它们的光度质量,被用来模拟导致星团形成的过程。星团流星雨的物理性质与τ-大力神星团的性质非常相似。这一发现证实了用于计算大气轨迹的阵雨成员的假设。这是我们详细研究的第三个星团,但也是第一个我们没有看到粒子质量分离的星团。这个星团的形成可能还不到2.5天,对于这样一个完全的质量分离来说,这个时间太短了。这样的年龄意味着由于热应力而崩解。然而,我们不能排除只有几个小时的年龄,这将允许其他分裂机制。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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