中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Numerical investigation of particle transport and deposition mechanisms driven by multiphase explosion coupling with buffer gas stream

文献类型:期刊论文

作者Liu, Leqi3; Meng BQ(孟宝清)2,4; Teng, Honghui3; Tian, Baolin1,5
刊名INTERNATIONAL JOURNAL OF MULTIPHASE FLOW
出版日期2025-11-01
卷号192页码:32
关键词EUVL Debris suppression Particle-laden multiphase explosion Buffer gas stream CMP-PIC method Particle transport Deposition mechanism
ISSN号0301-9322
DOI10.1016/j.ijmultiphaseflow.2025.105336
通讯作者Meng, Baoqing(mengbaoqing@imech.ac.cn) ; Teng, Honghui(hhteng@bit.edu.cn)
英文摘要Debris suppression and expulsion are among the key challenges in designing and optimizing the light source system of extreme ultraviolet lithography (EUVL). The mechanisms of debris transport and deposition still require further investigation. The study of this problem involves compressible gas-particle multiphase fluid dynamics. In this study, the transport, spatial distribution characteristics of debris particles, and the wall deposition mechanism within a rectangular cavity are investigated from the multiphase flow perspective by employing the compressible multiphase particle-in-cell (CMP-PIC) method. Our analysis reveals that particle transport encompasses the following processes: Firstly, multiple particle jets are induced due to shock-driven multiphase instability. Subsequently, the bending and coalescing process of particle jets are observed under the influence of vortex and buffer gas stream. Simultaneously, particles aggregate near the explosion center and are transported by the buffer gas stream. Furthermore, three distinct deposition mechanisms are identified for the first time, namely: (1) velocity-induced separation within the particle-buffer gas stream, (2) high-velocity particle jet impact, and (3) particle cluster transport driven by the buffer gas stream. Additionally, parametric study was conducted to evaluate the effect of particle diameter on the debris transport and deposition mechanism. Owing to variations of inertia and relaxation time, significant differences in the evolution, position distribution, and coalescing process are observed, which subsequently affect the deposition momentum of each wall and the emission ratio. Results indicate that smaller particles (dp=0.2 mu m and dp=0.6 mu m) exhibit shorter relaxation times, leading to enhanced expulsion by the buffer gas stream and reduced wall deposition momentum. Whereas larger particles (dp=1.0 mu m and dp=2.0 mu m) lag in evolution, weaken particle jet coalescing process, and increase wall deposition momentum due to its large inertia. Three-dimensional simulation results show that particlebuffer gas stream velocity separation and high-velocity particle impact mechanisms dominate particle distribution, while the influence of particle cluster formation and transport is significantly diminished. These findings on transport characteristics and deposition mechanism of particles provide valuable insights for optimizing EUVL source system.
分类号二类/Q1
WOS关键词RAYLEIGH-TAYLOR ; DYNAMICS ; PLASMA ; FRAGMENTATION ; VAPORIZATION ; DROPLETS ; DEBRIS
资助项目Academy of Sciences[XDB1100000] ; Academy of Sciences[XDB0620203]
WOS研究方向Mechanics
语种英语
WOS记录号WOS:001531375900001
资助机构Academy of Sciences
其他责任者孟宝清,Teng, Honghui
源URL[http://dspace.imech.ac.cn/handle/311007/102101]  
专题力学研究所_高温气体动力学国家重点实验室
作者单位1.Peking Univ, HEDPS CAPT, Beijing 100871, Peoples R China
2.Univ Chinese Acad Sci, Sch Engn Sci, Beijing 101408, Peoples R China;
3.Beijing Inst Technol, Sch Aerosp Engn, Beijing 100081, Peoples R China;
4.Chinese Acad Sci, Inst Mech, Beijing 100190, Peoples R China;
5.Beihang Univ, Sch Aeronaut Sci & Engn, Beijing 100191, Peoples R China;
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GB/T 7714
Liu, Leqi,Meng BQ,Teng, Honghui,et al. Numerical investigation of particle transport and deposition mechanisms driven by multiphase explosion coupling with buffer gas stream[J]. INTERNATIONAL JOURNAL OF MULTIPHASE FLOW,2025,192:32.
APA Liu, Leqi,孟宝清,Teng, Honghui,&Tian, Baolin.(2025).Numerical investigation of particle transport and deposition mechanisms driven by multiphase explosion coupling with buffer gas stream.INTERNATIONAL JOURNAL OF MULTIPHASE FLOW,192,32.
MLA Liu, Leqi,et al."Numerical investigation of particle transport and deposition mechanisms driven by multiphase explosion coupling with buffer gas stream".INTERNATIONAL JOURNAL OF MULTIPHASE FLOW 192(2025):32.

入库方式: OAI收割

来源:力学研究所

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