论文标题

重新审视Helios航天器数据:检测cometary Meteoroid Trails ta Initu dust撞击

Helios spacecraft data revisited: Detection of cometary meteoroid trails by in-situ dust impacts

论文作者

Krüger, Harald, Strub, Peter, Sommer, Max, Altobelli, Nicolas, Kimura, Hiroshi, Lohse, Ann-Kathrin, Grün, Eberhard, Srama, Ralf

论文摘要

彗星的流星痕迹存在于彗星附近,形成了星际尘埃云的精细结构。这些步道主要由彗星颗粒组成,尺寸约为0.1 mm至1 cm,它们以低速弹出,并保持非常接近彗星轨道,以围绕太阳的几次旋转。当重新分析1970年代测量的Helios尘埃数据时,Altobelli等人。 (2006年)认识到七个撞击的聚类,在非常狭窄的空间区域中以135度的真实异常角度检测到,作者认为这是潜在的彗星跟踪颗粒。我们重新分析了这些候选彗星步道颗粒,以研究其中某些或全部确实来自彗星小径的可能性,并且我们限制了它们的源彗星。 Soja等人开发的内部太阳系中,空间模型中用于勘探的星际灭气环境(IMEX)尘埃流是内部太阳系中彗星气星流的新通用模型。 (2015)。使用IMEX,我们研究Helios的Cometary Trail Travers。在太阳周围的十革命中,在Helios检测到候选粉尘颗粒的狭窄区域中,航天器反复穿越45p/Honda-Mrkos-Pajduvsakova和72p/Denning-fujikawa的彗星的步道。根据检测时间和粒子冲击方向,四个检测到的颗粒与这两个彗星的来源兼容。我们在约10^-8至10^-7 m^-3的这些踪迹中发现尘埃空间密度。基于航天器的尘埃分析仪可以追溯到其源物体的气星步道颗粒的原位检测和分析为彗星和小行星的远程组成分析打开了一个新的窗口,而无需将航天器飞行到这些天体上或降落在这些天体上。这为命运+,欧罗巴快船和IMAP等未来任务提供了新的科学机会。

Cometary meteoroid trails exist in the vicinity of comets, forming fine structure of the interplanetary dust cloud. The trails consist predominantly of cometary particles with sizes of approximately 0.1 mm to 1 cm which are ejected at low speeds and remain very close to the comet orbit for several revolutions around the Sun. When re-analysing the Helios dust data measured in the 1970s, Altobelli et al. (2006) recognized a clustering of seven impacts, detected in a very narrow region of space at a true anomaly angle of 135 deg, which the authors considered as potential cometary trail particles. We re-analyse these candidate cometary trail particles to investigate the possibility that some or all of them indeed originate from cometary trails and we constrain their source comets. The Interplanetary Meteoroid Environment for eXploration (IMEX) dust streams in space model is a new universal model for cometary meteoroid streams in the inner solar system, developed by Soja et al. (2015). Using IMEX we study cometary trail traverses by Helios. During ten revolutions around the Sun, and in the narrow region of space where Helios detected the candidate dust particles, the spacecraft repeatedly traversed the trails of comets 45P/Honda-Mrkos-Pajduvsakova and 72P/Denning-Fujikawa. Based on the detection times and particle impact directions, four detected particles are compatible with an origin from these two comets. We find a dust spatial density in these trails of about 10^-8 to 10^-7 m^-3. The in-situ detection and analysis of meteoroid trail particles which can be traced back to their source bodies by spacecraft-based dust analysers opens a new window to remote compositional analysis of comets and asteroids without the necessity to fly a spacecraft to or even land on those celestial bodies. This provides new science opportunities for future missions like Destiny+, Europa Clipper and IMAP.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源