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1.
Opt Express ; 31(23): 37703-37721, 2023 Nov 06.
Artigo em Inglês | MEDLINE | ID: mdl-38017895

RESUMO

Sensitivity to weather conditions is the principal limitation of free-space optical communication. However, for the scattering based ultraviolet (UV) non-line-of-sight (NLOS) communication, the atmospheric scattering effect functions as an attenuation factor and potentially as a performance enhancer. To investigate the UV NLOS transmission coverage under different weather conditions, we employ the Mie Theory in conjunction with classical aerosol and hydrometeor particle models to estimate the absorption coefficient, the scattering coefficient, and the scattering phase function. We then use these atmospheric parameters combined with a range estimation model to determine the coverage of the UV NLOS communication for specified path loss. Simulation results reveal that in non-precipitating weather, poorer visibility correlates with broader coverage. In foggy conditions, the coverage range in light fog exceeds that in fog-free environments; however, as fog intensity increases, the coverage range decreases. Rain enhances the coverage range; and heavier precipitation results in a larger coverage area.

2.
Nanotechnology ; 31(31): 315301, 2020 Jul 31.
Artigo em Inglês | MEDLINE | ID: mdl-32289763

RESUMO

Micro/nanostructures with high aspect ratios in silicon wafers obtained by plasma etching are of great significance in device fabrication. In most cases, the scallop nanostructure in deep silicon etching should be suppressed. However, the scallop nanostructure could be applied in electronic device fabrication as characteristic information, which indicates the balance between deposition and etching. In this work, the applications of scallop nanostructures in etching process optimization and environmental protection are demonstrated. In addition, the minimum effect of the cycle time on the scallop size is reported for the first time. These results could bring new thoughts to the electronic devices related fields, such as micro-electro-mechanical systems (MEMS), silicon capacitors and advanced packaging.

3.
Zhonghua Yi Shi Za Zhi ; 40(2): 105-8, 2010 Mar.
Artigo em Chinês | MEDLINE | ID: mdl-20510099

RESUMO

'Interpretive outline of Dunhuang medical literature', hidden in Russia, which was written by Li Ying-cun, was the required reading book for the researchers of Dunhuang medical literature. By carefully reading this book and contrasting it with the original volumes, we can find that there are still careless omissions in the aspects of knowledge, sentences and phrases and interpretations in this book. As a result, we supplement and correct it by combining other relevant literature.


Assuntos
Expedições/história , Manuscritos Médicos como Assunto/história , Medicina Tradicional Chinesa/história , China , História Antiga , Federação Russa
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