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首页> 外文期刊>Advances in space research >Physical characterization of the deep-space debris WT1190F: A testbed for advanced SSA techniques
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Physical characterization of the deep-space debris WT1190F: A testbed for advanced SSA techniques

机译:深空碎片WT1190F的物理特征:先进SSA技术的测试平台

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We report on extensiveBVRcIcphotometry and low-resolution (λ/Δλ∼250) spectroscopy of the deep-space debris WT1190F, which impacted Earth offshore from Sri Lanka, on 2015 November 13. In spite of its likely artificial origin (as a relic of some past lunar mission), the case offered important points of discussion for its suggestive connection with the envisaged scenario for a (potentially far more dangerous) natural impactor, like an asteroid or a comet.Our observations indicate for WT1190F an absolute magnitudeRc=32.45±0.31, with a flat dependence of reflectance on the phase angle, such asdRc/dϕ∼0.007±2 mag deg−1. The detected short-timescale variability suggests that the body was likely spinning with a period twice the nominal figure ofPflash=1.4547±0.0005s, as from the observed lightcurve. In theBVRcIccolor domain, WT1190F closely resembled the Planck deep-space probe. This match, together with a depressed reflectance around 4000 and 8500 Å may be suggestive of a “grey” (aluminized) surface texture.The spinning pattern remained in place also along the object fiery entry in the atmosphere, a feature that may have partly shielded the body along its fireball phase perhaps leading a large fraction of its mass to survive intact, now lying underwater along a tight (∼1×80 km) strip of sea, at a depth of 1500 m or less.Under the assumption of Lambertian scatter, an inferred size of216±30/α/0.1 cm is obtained for WT1190F. By accounting for non-gravitational dynamical perturbations, the Area-to-Mass ratio of the body was in the range(0.006⩽AMR⩽0.011) m2 kg−1.Both these figures resulted compatible with the two prevailing candidates to WT1190F’s identity, namely the Athena II Trans-Lunar Injection Stage of the Lunar Prospector mission, and the ascent stage of the Apollo 10 lunar module, callsign “Snoopy”. Both candidates have been analyzed in some detail here through accurate 3D CAD design mockup modelling and BRDF reflectance rendering to derive the inherent photometric properties to be compared with the observations.
机译:我们报告了2015年11月13日广泛影响深海碎片WT1190F的BVRc光度法和低分辨率(λ/Δλ〜250)光谱的情况,该碎片对斯里兰卡近海的地球产生了影响。尽管它可能是人工起源的(作为一些遗迹)过去的登月任务),此案因与设想的(可能更危险的)自然撞击器(如小行星或彗星)的设想情景有关而暗示了重要的讨论。我们的观测结果表明,WT1190F的绝对大小Rc = 32.45±0.31 ,反射率对相位角具有平坦的依赖性,例如dRc / dϕ〜0.007±2 mag deg-1。从观察到的光曲线来看,检测到的短时尺度变化表明,人体旋转的周期可能是Pflash的标称值的两倍(1.4547±0.0005s)。在BVRic彩色域中,WT1190F非常类似于Planck深空探测器。这种匹配以及在4000和8500 500附近反射率的降低可能表明表面为“灰色”(铝化)。纺丝图案也沿着物体在大气中的炽热进入而保留在原位,该特征可能已部分屏蔽沿着火球阶段的身体可能会导致大部分质量原封不动地存活下来,现在它躺在一条深约1500 m或更深的海底(约1×80 km)的海带中。 ,对于WT1190F得出的推断尺寸为216±30 /α/ 0.1 cm。通过考虑非重力动力扰动,人体的面积质量质量比在(0.006⩽AMR⩽0.011)m2 kg-1范围内,这两个数字均与WT1190F身份的两个主要候选物相容,即月球勘探者任务的雅典娜II跨月注入阶段,以及阿波罗10号登月舱的上升阶段,呼号为“史努比”。此处通过精确的3D CAD设计模型建模和BRDF反射率渲染对这两种候选物进行了详细的分析,以得出固有的光度特性,以便与观测结果进行比较。

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