论文标题
伽马射线天文学的立方体
CubeSats for Gamma-Ray Astronomy
论文作者
论文摘要
经过多年的空间飞行,主要是出于教育目的的飞行之后,立方体 - 与“ 1U”单位或立方体的布置相对应的形式的小卫星,每侧10厘米 - 作为技术进步和科学研究的有价值的平台。 Cubesats提供了相对较快的,低成本的访问空间的有效载荷,这些有效载荷由相对较小的团队建造,测试和运营,并提供了来自学生和早期职业研究人员的大量贡献。现在,紧凑,低功率探测器,读取电子设备和飞行计算机的持续进展已启用X射线和伽马射线感应有效载荷,这些有效载荷可以符合立方体任务的约束,从而允许在轨道上展示新技术和创新的高能量天文学观察。通过检测和定位明亮的瞬变(例如伽马射线爆发,太阳能耀斑和陆地伽玛射线闪光灯),伽马射线感应的立方体肯定会在新时代的新时代做出重要贡献。但是,其他天体物理科学领域需要在低背景环境中进行长时间观察,包括伽马射线极化法,核线研究和弥漫背景的测量,也可能受益。我们介绍了Cubesats对高能天文学的主要好处,突出了目前或即将研究的科学领域,并审查目前正在开发,开发或提议的任务。伽马射线天文学的丰富组合已经存在,并且在不久的将来有可能进行广泛创造性和科学生产的任务的潜力非常高。
After many years of flying in space primarily for educational purposes, CubeSats - tiny satellites with form factors corresponding to arrangements of "1U" units, or cubes, each 10 cm on a side - have come into their own as valuable platforms for technology advancement and scientific investigations. CubeSats offer comparatively rapid, low-cost access to space for payloads that be built, tested, and operated by relatively small teams, with substantial contributions from students and early career researchers. Continuing advances in compact, low-power detectors, readout electronics, and flight computers have now enabled X-ray and gamma-ray sensing payloads that can fit within the constraints of CubeSat missions, permitting in-orbit demonstrations of new techniques and innovative high-energy astronomy observations. Gamma-ray-sensing CubeSats are certain to make an important contribution in the new era of multi-messenger, time-domain astronomy by detecting and localizing bright transients such as gamma-ray bursts, solar flares, and terrestrial gamma-ray flashes; however, other astrophysical science areas requiring long observations in a low-background environment, including gamma-ray polarimetry, studies of nuclear lines, and measurement of diffuse backgrounds, will likely benefit as well. We present the primary benefits of CubeSats for high-energy astronomy, highlight the scientific areas currently or soon to be studied, and review the missions that are currently operating, under development, or proposed. A rich portfolio of CubeSats for gamma-ray astronomy already exists, and the potential for a broad range of creative and scientifically productive missions in the near future is very high.