论文标题

对地球和金星内部和金星的小行星的深层暮光调查

A Deep and Wide Twilight Survey for Asteroids Interior to Earth and Venus

论文作者

Sheppard, Scott S., Tholen, David, Pokorny, Petr, Micheli, Marco, Dell'Antonio, Ian, Fu, Shenming, Trujillo, Chadwick, Beaton, Rachael, Carlsten, Scott, Drlica-Wagner, Alex, Martinez-Vazquez, Clara, Mau, Sidney, Santana-Ros, Toni, Santana-Silva, Luidhy, Sifo, Cristobal, Simha, Sunil, Thirouin, Audrey, Trilling, David, Vivas, A. Katherina, Zenteno, Alfredo

论文摘要

我们正在使用智能中的Blanco 4M望远镜在黑暗能源摄像头上使用暮光时间进行调查,以寻找地球和金星轨道内部的物体。迄今为止,我们发现了两个稀有的Atira/Apohele小行星2021 LJ4和2021 PH27,它们具有完全内部的轨道。我们还发现了越过地球轨道2022 AP7的地球物体(NEO)附近的一种新的阿波罗类型。其中两个发现可能的直径大于1公里。 2022 AP7可能是大约八年来发现的最大潜在危险小行星(PHA)。迄今为止,我们已经覆盖了金星轨道附近和内部附近的624个平方度的天空。平均图像为R波段中的21.3 mags,在22nd Mag附近的最佳图像。我们的新发现2021 PH27具有以小行星,0.4617 au为名的最小的半高轴,并且是最大的一般相对论效应(53个Arcseconds/Century),以太阳能系统中的任何人而闻名。该调查已检测到所有已知的Atira Neos的15%。我们对现有的金星共振对象以及Atira和Vatira小行星类构成了强烈的限制。这些内部小行星种群对于完成地球附近的小行星的普查很重要,包括一些在其他调查中不容易发现的最可能的地球撞击器。将发现内部与地球和金星的实际人群与通过外推从已知的人口外推到地球存在的小行星的实际种群对于更好地理解新人口的起源,组成和结构很重要。

We are conducting a survey using twilight time on the Dark Energy Camera with the Blanco 4m telescope in Chile to look for objects interior to Earth's and Venus' orbits. To date we have discovered two rare Atira/Apohele asteroids, 2021 LJ4 and 2021 PH27, which have orbits completely interior to Earth's orbit. We also discovered one new Apollo type Near Earth Object (NEO) that crosses Earth's orbit, 2022 AP7. Two of the discoveries likely have diameters greater than 1 km. 2022 AP7 is likely the largest Potentially Hazardous Asteroid (PHA) discovered in about eight years. To date we have covered 624 square degrees of sky near to and interior to the orbit of Venus. The average images go to 21.3 mags in the r-band, with the best images near 22nd mag. Our new discovery 2021 PH27 has the smallest semi-major axis known for an asteroid, 0.4617 au, and the largest general relativistic effects (53 arcseconds/century) known for any body in the Solar System. The survey has detected about 15 percent of all known Atira NEOs. We put strong constraints on any stable population of Venus co-orbital resonance objects existing, as well as the Atira and Vatira asteroid classes. These interior asteroid populations are important to complete the census of asteroids near Earth, including some of the most likely Earth impactors that cannot easily be discovered in other surveys. Comparing the actual population of asteroids found interior to Earth and Venus with those predicted to exist by extrapolating from the known population exterior to Earth is important to better understand the origin, composition and structure of the NEO population.

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