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石墨烯光推进原理分析及光驱动特性测试研究

杨文将 刘润泽 向红军 赵鹏 邓富文 樊子郴 黄彬彧 汤海滨

固体火箭技术2023,Vol.46Issue(6):866-873,8.
固体火箭技术2023,Vol.46Issue(6):866-873,8.DOI:10.7673/j.issn.1006-2793.2023.06.009

石墨烯光推进原理分析及光驱动特性测试研究

Analysis on graphene optical propulsion theory and measurement of its optical driving characteristics

杨文将 1刘润泽 1向红军 1赵鹏 1邓富文 1樊子郴 1黄彬彧 1汤海滨1

作者信息

  • 1. 北京航空航天大学 宇航学院,北京 100191
  • 折叠

摘要

Abstract

Optical propulsion is a propulsion method that converts light energy into kinetic energy.Graphene has unique optoe-lectronic properties,which is an essential prerequisite for developing optical propulsion technology.The development of graphene optical propulsion technology was introduced.Three kinds of mechanisms of graphene photo propulsion were dislussed,such as elec-tron jet,Knudsen force,and laser ablation.Moreover,the order of the driving force generated by the electron jet and the Knudsen force was calculated.It is believed that Knudsen force is more likely to be the cause of light driving phenomenon.In this paper,the surface temperature of the graphene sponge under laser irradiation on one side and the unirradiated side was characterizd by using a small force measurement method of a suspended wire swing.The noticeable temperature difference was formed between the two sur-faces,and heat was mainly concentrated on the irradiated surface.The influence of vacuum degree on the magnitude of the optical driving force was discussed.The results show that the photo-driving force of graphene is in the micro-newton order.Thermal effect plays a dominant role in optical driving force.When the laser irradiation power is constant,a low vacuum degree(1~10 Pa)is a suitable environment for generating the photo-driving force,which indirectly indicates the possibility that the photo-driving force of graphene mainly comes from the Knudsen force.

关键词

石墨烯/光推进/电子射流/Knudsen力/光驱动力

Key words

graphene/optical propulsion/electron jet/Knudsen force/optical drive power

分类

航空航天

引用本文复制引用

杨文将,刘润泽,向红军,赵鹏,邓富文,樊子郴,黄彬彧,汤海滨..石墨烯光推进原理分析及光驱动特性测试研究[J].固体火箭技术,2023,46(6):866-873,8.

基金项目

国家自然科学基金(11772025). (11772025)

固体火箭技术

OA北大核心CSCDCSTPCD

1006-2793

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