论文标题
CM软骨中热变质的时机:对Ryugu和Bennu未来样本的影响
Timing of thermal metamorphism in CM chondrites: implication for Ryugu and Bennu future sample return
论文作者
论文摘要
碳质软管通常被认为是水的潜在贡献者和其他对陆地行星的挥发物,因为其中大多数包含大量的含水矿物相。因此,碳质软管是地球的候选基础,阐明其热历史对于理解地球和陆地行星的挥发性元素历史至关重要。 CM型碳质软管的很大一部分是热变态或加热的,并且损失了部分水含量。此类加热事件的起源和时机仍在争论中,因为它们可能是通过短寿命的放射性加热在太阳系的第一个MYR中发生的,或者以后通过撞击引起的加热和 /或太阳辐射。由于RB比SR更波动,并且在RB中高度耗尽了一些加热的CM软管,因此可以使用基于87RB至87SR的放射性衰减的约会系统来约会与RB和SR的分数有关的加热事件。 02010,PCA 91008,QUE 93005和MIL 07675)。我们发现所有五个陨石的加热事件发生在太阳系形成后至少3 GA。这样的时机不包括短寿命的放射性加热,例如这些陨石中热变质的起源,并将此类加热事件与C型小行星的碰撞家族的年龄相关联。
Carbonaceous chondrites are often considered potential contributors of water and other volatiles to terrestrial planets as most of them contain significant amounts of hydrous mineral phases. As such, carbonaceous chondrites are candidate building blocks for Earth, and elucidating their thermal histories is of direct important for understanding the volatile element history of Earth and the terrestrial planets. A significant fraction of CM type carbonaceous chondrites are thermally metamorphosed or heated and have lost part of their water content. The origin and the timing of such heating events are still debated, as they could have occurred either in the first Myrs of the Solar System via short-lived radioactive heating, or later by impact induced heating and or solar radiation. Since Rb is more volatile than Sr, and some heated CM chondrites are highly depleted in Rb, a dating system based on the radioactive decay of 87Rb to 87Sr could be used to date the heating event relating to the fractionation of Rb and Sr. Here, we have leveraged the 87Rb 87Sr system to date the heating of five CM chondrites (PCA 02012, PCA 02010, PCA 91008, QUE 93005 and MIL 07675). We find that the heating events of all five meteorites occurred at least 3 Ga after the formation of the Solar System. Such timing excludes short-lived radioactive heating as the origin of thermal metamorphism in these meteorites, and relates such heating events to ages of collisional families of C-type asteroids.