论文标题

星际任务的低成本前体

Low-cost precursor of an interstellar mission

论文作者

Heller, René, Anglada-Escudé, Guillem, Hippke, Michael, Kervella, Pierre

论文摘要

太阳光子压力为太阳系中的航天器提供了可行的推力来源。从理论上讲,它也可以实现星际任务,但是每个横截面区域需要极小的质量来克服太阳重力。我们识别出一种合成碳的泡沫,密度为0.18 kg/m^3(比铝的15,000倍)是一种多功能材料,可用于阳光高效推进。壳厚度EPS_SHL = 1毫米的空心空气仪球体可能会在星际间空间的太阳辐射时进入星际。从太阳下发射1时,EPS_SHL = 0.5毫米的EPS_SHL的Elographite壳在60 d的轨道到达火星的轨道,并在4.3岁的冥王星轨道上到达。在0.04 au(帕克太阳能探针的最接近)的壳厚度为1千米厚的Elerograte空心球的释放导致逃逸速度接近6900 km/s,并且至185年的旅行至我们最近的恒星Proxima Centauri的距离。可以观察到米大小的空气仪帆的红外签名,JWST从太阳上,超出火星轨道,最多可容纳2个AU。 EPS_SHL = 100千分尺,半径为1 m(5 m)的空心球体重230 mg(5.7 g),星际逃生的质量为2.2 g(55 g)。有效载荷边距是航天器质量的十倍,而化学星际火箭的有效载荷通常是火箭的重量的千分之一。简单的沟通将使行星际培养基和搜索可疑行星的九个方面的研究能够研究,并将作为对阿尔法半人马座的前体任务。我们估计原型开发费用为100万美元,每帆的价格为1000美元,总计<1000万美元,包括发布行星际任务的Piggyback概念。

The solar photon pressure provides a viable source of thrust for spacecraft in the solar system. Theoretically it could also enable interstellar missions, but an extremely small mass per cross section area is required to overcome the solar gravity. We identify aerographite, a synthetic carbon-based foam with a density of 0.18 kg/m^3 (15,000 times more lightweight than aluminum) as a versatile material for highly efficient propulsion with sunlight. A hollow aerographite sphere with a shell thickness eps_shl = 1 mm could go interstellar upon submission to the solar radiation in interplanetary space. Upon launch at 1 AU from the Sun, an aerographite shell with eps_shl = 0.5 mm arrives at the orbit of Mars in 60 d and at Pluto's orbit in 4.3 yr. Release of an aerographite hollow sphere, whose shell is 1 micrometer thick, at 0.04 AU (the closest approach of the Parker Solar Probe) results in an escape speed of nearly 6900 km/s and 185 yr of travel to the distance of our nearest star, Proxima Centauri. The infrared signature of a meter-sized aerographite sail could be observed with JWST up to 2 AU from the Sun, beyond the orbit of Mars. An aerographite hollow sphere with eps_shl = 100 micrometer and a radius of 1 m (5 m) weighs 230 mg (5.7 g) and has a 2.2 g (55 g) mass margin for interstellar escape. The payload margin is ten times the mass of the spacecraft, whereas the payload on chemical interstellar rockets is typically a thousandth of the weight of the rocket. Simplistic communication would enable studies of the interplanetary medium and a search for the suspected Planet Nine, and would serve as a precursor mission to alpha Centauri. We estimate prototype developments costs of 1 million USD, a price of 1000 USD per sail, and a total of <10 million USD including launch for a piggyback concept with an interplanetary mission.

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