论文标题
维纳斯天体生物学的前体气球任务
A Precursor Balloon Mission for Venusian Astrobiology
论文作者
论文摘要
在金星大气中的磷酸的潜在检测已激发了人们对这种环境中生命的可能性的兴趣。如果金星的云甲板确实是生命的居所,则应驻留在约50-60 km的高度之间的“可居住区”,与中间云甲板大致相吻合,那里的温度和压力(但不是大气组成)与地球表面的条件相似。我们绘制了一个前体的天文学任务,可以在2022 - 2023年通过启动机会搜索仪表气球的原位搜索这种假定的生命形式。该任务将通过漂浮在维纳斯云甲板上的小气球收集气溶胶和灰尘样品,并直接审查它们是否包括任何明显的生物材料,如果可以的话,它们的形状,尺寸和运动性。我们的气球任务还将配备一个微型质谱仪,该质谱仪应允许检测复杂的有机分子。上下文摄像头可以增强任务,以寻找金星大气可居住区中生活的宏观签名。最后,允许的质量和功率约束,在金星风中气球运动的无线电干涉测定,以及原位温度和压力测量,将为中间云区域的气象不足的气象提供有价值的见解。
The potential detection of phosphine in the atmosphere of Venus has reignited interest in the possibility of life aloft in this environment. If the cloud decks of Venus are indeed an abode of life, it should reside in the "habitable zone" between ~ 50-60 km altitude, roughly coincident with the middle cloud deck, where the temperature and pressure (but not the atmospheric composition) are similar to conditions at the Earth's surface. We map out a precursor astrobiological mission to search for such putative lifeforms in situ with instrument balloons, which could be delivered to Venus via launch opportunities in 2022-2023. This mission would collect aerosol and dust samples by means of small balloons floating in the Venusian cloud deck and directly scrutinize whether they include any apparent biological materials and, if so, their shapes, sizes, and motility. Our balloon mission would also be equipped with a miniature mass spectrometer that should permit the detection of complex organic molecules. The mission is augmented by contextual cameras to search for macroscopic signatures of life in the Venusian atmospheric habitable zone. Finally, mass and power constraints permitting, radio interferometric determinations of the motion of the balloons in Venusian winds, together with in situ temperature and pressure measurements, will provide valuable insights into the poorly understood meteorology of the middle cloud region.