ESA's Mars Express has returned new images of an elongated1(细长的) impact crater2 in the southern hemisphere of Mars. Located just south of the Huygens basin, it could have been carved out by a train of projectiles3 striking the planet at a shallow angle. The large Huygens basin (not visible in the main image but seen in the wider contextual image) is about 450 km in diameter and lies in the heavily cratered4 southern highlands. In this area there are many impact scars but none perhaps are more intriguing5(有趣的) than the 'elongated craters6'.
One of these craters is seen in this new image, which covers an area of 133 x 53 km at 21°S / 55°E. The scene was captured on 4 August 2010 and the smallest objects distinguishable by the camera are about 15 m across.
This unnamed elongated crater sits just to the south of the much larger Huygens basin. It is about 78 km in length, opens from just under 10 km wide at one end to 25 km at the other, and reaches a depth of 2 km.
Impact craters are generally round because the projectiles(落弹数) that create them push into the ground before the shockwave of the impact can explode outwards7. So why is this one elongated?
The clue comes from the surrounding blanket of material, thrown out in the initial impact. This 'ejecta blanket' is shaped like a butterfly's wings, with two distinct lobes8(耳垂,脑叶) . This hints that two projectiles, possibly halves of a once-intact body, slammed into the surface here.
In the crater itself, there are three deeper areas that could be evidence for more than two projectiles. In addition, a second elongated crater lies to the north-northwest. It can be seen in the wider contextual(前后关系的) image and is in line with the one seen here, reinforcing the notion that these structures were the result of a train of projectiles.
In the early 1980s, scientists proposed that elongated impact craters were formed by incoming chains of orbital debris9 following trajectories10 that decayed with time. As the debris spiralled downwards11, it eventually struck the planet at shallow angles, gouging12 out the elongated craters.
This particular ejecta blanket contains many smaller craters, indicating that the original formed a relatively13 long time ago and then itself become a target.
In addition, there are several small channels on the blanket, suggesting that the strike took place into a surface rich in volatiles, perhaps even water, that were melted by the heat of impact and flowed away.
Below the eastern crater rim14 are two well-formed and relatively deep craters. They have punched through the ejecta blanket and so must have appeared after the formation of the large crater. Despite their sizes of 4 km and 5 km, these smaller craters show no indication of the presence of water.
To the north there is another crater that must be older because the butterfly-ejecta blanket has partially15 flowed into it.
Several landslides16 have modified the steep crater rim. This can be most clearly seen on the two smaller craters on the rim, which are only partially preserved, parts of them having fallen away.
The formation of these elongated features is not over: the martian(火星的) moon Phobos will plough into the planet in a few tens of millions of years, breaking up in the process, and likely creating new chains across the surface.