Active formation of 'chaos terrain' over shallow subsurface water on Europa

被引:231
作者
Schmidt, B. E. [1 ]
Blankenship, D. D. [1 ]
Patterson, G. W. [2 ]
Schenk, P. M. [3 ]
机构
[1] Univ Texas Austin, Inst Geophys, John A & Katherine G Jackson Sch Geosci, Austin, TX 78758 USA
[2] Johns Hopkins Univ, Appl Phys Lab, Laurel, MD 20723 USA
[3] Lunar & Planetary Inst, Houston, TX 77058 USA
关键词
LIQUID WATER; ICE-SHELF; ICELAND; OCEAN; MODEL;
D O I
10.1038/nature10608
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Europa, the innermost icy satellite of Jupiter, has a tortured young surface(1-4) and sustains a liquid water ocean(1-6) below an ice shell of highly debated thickness(1-5,7-10). Quasi-circular areas of ice disruption called chaos terrains are unique to Europa, and both their formation and the ice-shell thickness depend on Europa's thermal state(1-5,7-17). No model so far has been able to explain why features such as Conamara Chaos stand above surrounding terrain and contain matrix domes(10,18). Melt-through of a thin ( few-kilometre) shell(3,7,8) is thermodynamically improbable and cannot raise the ice(10,18). The buoyancy of material rising as either plumes of warm, pure ice called diapirs(1,9-15) or convective cells(16,17) in a thick (> 10 kilometres) shell is insufficient to produce the observed chaos heights, and no single plume can create matrix domes(10,18). Here we report an analysis of archival data from Europa, guided by processes observed within Earth's subglacial volcanoes and ice shelves. The data suggest that chaos terrains form above liquid water lenses perched within the ice shell as shallow as 3 kilometres. Our results suggest that ice-water interactions and freeze-out give rise to the diverse morphologies and topography of chaos terrains. The sunken topography of Thera Macula indicates that Europa is actively resurfacing over a lens comparable in volume to the Great Lakes in North America.
引用
收藏
页码:502 / 505
页数:4
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