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不同重力环境下辐射加热材料表面着火特性分析 被引量:7
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作者 孔文俊 吐尔逊 +3 位作者 艾力江 王伟刚 杜文锋 张孝谦 《工程热物理学报》 EI CAS CSCD 北大核心 2002年第1期111-114,共4页
研究外界辐射加热下,不同重力环境中热薄燃料的着火特性.探讨了重力、环境氧浓度、环境压力及外界辐射强度对着火的影响.结果表明,随着重力的变化,存在不同的着火机制.在微重力和在高的环境氧浓度中,材料的着火延迟时间变短.压... 研究外界辐射加热下,不同重力环境中热薄燃料的着火特性.探讨了重力、环境氧浓度、环境压力及外界辐射强度对着火的影响.结果表明,随着重力的变化,存在不同的着火机制.在微重力和在高的环境氧浓度中,材料的着火延迟时间变短.压力减小,着火延迟时间增大.随着辐射强度的增大,着火延迟时间变小. 展开更多
关键词 微重力 辐射加热材料 热薄燃料 表面着火 重力环境 燃烧
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Momentum-space imaging spectroscopy for the study of nanophotonic materials 被引量:3
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作者 Yiwen Zhang Maoxiong Zhao +12 位作者 Jiajun Wang Wenzhe Liu Bo Wang Songting Hu Guopeng Lu Ang Chen Jing Cui Weiyi Zhang Chia Wei Hsu Xiaohan Liu Lei Shi Haiwei Yin Jian Zi 《Science Bulletin》 SCIE EI CSCD 2021年第8期824-838,M0004,共16页
The novel phenomena in nanophotonic materials, such as the angle-dependent reflection and negative refraction effect, are closely related to the photonic dispersions EepT. EepT describes the relation between energy E ... The novel phenomena in nanophotonic materials, such as the angle-dependent reflection and negative refraction effect, are closely related to the photonic dispersions EepT. EepT describes the relation between energy E and momentum p of photonic eigenmodes, and essentially determines the optical properties of materials. As EepT is defined in momentum space(k-space), the experimental method to detect the energy distribution, that is the spectrum, in a momentum-resolved manner is highly required. In this review, the momentum-space imaging spectroscopy(MSIS) system is presented, which can directly study the spectral information in momentum space. Using the MSIS system, the photonic dispersion can be captured in one shot with high energy and momentum resolution. From the experimental momentumresolved spectrum data, other key features of photonic eigenmodes, such as quality factors and polarization states, can also be extracted through the post-processing algorithm based on the coupled mode theory. In addition, the interference configurations of the MSIS system enable the measurement of coherence properties and phase information of nanophotonic materials, which is important for the study of light-matter interaction and beam shaping with nanostructures. The MSIS system can give the comprehensive information of nanophotonic materials, and is greatly useful for the study of novel photonic phenomena and the development of nanophotonic technologies. 展开更多
关键词 Momentum space imaging Nanophotonic material Photonic dispersion Photonic eigenmode Quality factor Polarization state
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