推进
空间推进技术
太空探索
行星际空间飞行
电力航天器推进
计算机科学
数码产品
航天器
系统工程
空格(标点符号)
纳米技术
航空航天工程
工程类
电气工程
材料科学
物理
磁场
操作系统
太阳风
量子力学
作者
Igor Levchenko,Shuyan Xu,George Teel,Davide Mariotti,Mitchell L. R. Walker,Michael Keidar
标识
DOI:10.1038/s41467-017-02269-7
摘要
Abstract Drastic miniaturization of electronics and ingression of next-generation nanomaterials into space technology have provoked a renaissance in interplanetary flights and near-Earth space exploration using small unmanned satellites and systems. As the next stage, the NASA’s 2015 Nanotechnology Roadmap initiative called for new design paradigms that integrate nanotechnology and conceptually new materials to build advanced, deep-space-capable, adaptive spacecraft. This review examines the cutting edge and discusses the opportunities for integration of nanomaterials into the most advanced types of electric propulsion devices that take advantage of their unique features and boost their efficiency and service life. Finally, we propose a concept of an adaptive thruster.
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