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Photometry of Particles Ejected From Active Asteroid (101955) Bennu

机译:从活动小行星(101955)Bennu喷出的粒子的光度测量

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摘要

Near-Earth asteroid (101955) Bennu is an active asteroid experiencing mass loss in the form of ejection events emitting up to hundreds of millimeter- to centimeter-scale particles. The close proximity of the Origins, Spectral Interpretations, Resource Identification, and Security-Regolith Explorer spacecraft enabled monitoring of particles for a 10-month period encompassing Bennu's perihelion and aphelion. We found 18 multiparticle ejection events, with masses ranging from near zero to hundreds of grams (or thousands with uncertainties) and translational kinetic energies ranging from near zero to tens of millijoules (or hundreds with uncertainties). We estimate that Bennu ejects similar to 10(4) g per orbit. The largest event took place on 6 January 2019 and consisted of similar to 200 particles. The observed mass and translational kinetic energy of the event were between 459 and 528 g and 62 and 77 mJ, respectively. Hundreds of particles not associated with the multiparticle ejections were also observed. Photometry of the best-observed particles, measured at phase angles between similar to 70 degrees and 120 degrees, was used to derive a linear phase coefficient of 0.013 +/- 0.005 magnitudes per degree of phase angle. Ground-based data back to 1999 show no evidence of past activity for Bennu; however, the currently observed activity is orders of magnitude lower than observed at other active asteroids and too low be observed remotely. There appears to be a gentle decrease in activity with distance from the Sun, suggestive of ejection processes such as meteoroid impacts and thermal fracturing, although observational bias may be a factor. Plain Language Summary We measured the brightness of pebble-sized particles in the vicinity of near-Earth asteroid Bennu to better understand their physical characteristics and the events that launched them from Bennu's surface. Our measurements spanned 10 months, encompassing Bennu's closest and farthest distances from the Sun, so that we could assess how the level of ejection activity changes with solar distance. We observed 18 multiparticle ejection events containing anywhere from a few to 200+ particles. Individual particles ranged from millimeters to centimeters in diameter. The energy of the events and a possible decrease in activity with larger distances from the Sun suggest that meteoroid impacts, fracturing of surface boulders due to solar heating, or both may be responsible for ejecting the particles. We estimate that Bennu releases similar to 10,000 g of material over one orbit or 1.2 years. Although mass loss has been remotely observed for other asteroids, the comparatively low level of particle ejection activity at Bennu was only observable thanks to the close proximity of the Origins, Spectral Interpretations, Resource Identification, and Security-Regolith Explorer spacecraft.
机译:近地小行星(101955)Bennu是一颗活跃的小行星,其质量损失以抛射事件的形式出现,发射出高达数百毫米到厘米级的粒子。起源、光谱解释、资源识别和安全风化层探测器航天器的紧密接近,使得对包括Bennu的近日点和远日点在内的粒子进行为期10个月的监测。我们发现了18个多粒子抛射事件,质量范围从接近零到数百克(或数千个不确定),平移动能范围从接近零到几十毫焦耳(或数百个不确定)。我们估计Bennu在每个轨道上喷射的重量与10(4)g相似。最大的事件发生在2019年1月6日,由大约200个粒子组成。观测到的质量和平移动能分别在 459 和 528 g 之间,以及 62 和 77 mJ 之间。还观察到数百个与多粒子抛射无关的粒子。在类似于 70 度和 120 度之间的相位角下测量的最佳观测粒子的光度法用于推导出每相位角 0.013 +/- 0.005 量级的线性相位系数。1999年的地面数据显示,没有证据表明Bennu过去有过活动;然而,目前观测到的活动比在其他活动小行星上观测到的活动要低几个数量级,而且远程观测到的太低了。随着与太阳的距离增加,活动似乎略有减少,这表明流星体撞击和热破裂等抛射过程,尽管观测偏差可能是一个因素。通俗易懂的语言摘要 我们测量了近地小行星Bennu附近的鹅卵石大小的粒子的亮度,以更好地了解它们的物理特征以及从Bennu表面发射它们的事件。我们的测量跨越了10个月,包括Bennu与太阳的最近和最远的距离,因此我们可以评估抛射活动水平如何随太阳距离而变化。我们观察到 18 个多粒子喷射事件,其中包含从几个到 200+ 个粒子不等的粒子。单个颗粒的直径从毫米到厘米不等。这些事件的能量和与太阳距离越远的活动可能减少,这表明流星体撞击,由于太阳加热导致的表面巨石破裂,或两者兼而有之,可能是导致粒子喷射的原因。我们估计,Bennu在一个轨道或1.2年内释放的物质相当于10,000克。虽然已经远程观测到其他小行星的质量损失,但Bennu的粒子抛射活动水平相对较低,这要归功于起源、光谱解释、资源识别和安全风化层探测器航天器的接近。

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