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关于局部微波作用下从硅中喷射出的类球状闪电等离子体的观测。

Observations of Ball-Lightning-Like Plasmoids Ejected from Silicon by Localized Microwaves.

作者信息

Meir Yehuda, Jerby Eli, Barkay Zahava, Ashkenazi Dana, Mitchell James Brian, Narayanan Theyencheri, Eliaz Noam, LeGarrec Jean-Luc, Sztucki Michael, Meshcheryakov Oleg

机构信息

Faculty of Engineering, Tel Aviv University, Ramat Aviv 69978, Israel.

Wolfson Applied Materials Research Center, Tel Aviv University, Ramat Aviv 69978, Israel.

出版信息

Materials (Basel). 2013 Sep 11;6(9):4011-4030. doi: 10.3390/ma6094011.

Abstract

This paper presents experimental characterization of plasmoids (fireballs) obtained by directing localized microwave power (<1 kW at 2.45 GHz) onto a silicon-based substrate in a microwave cavity. The plasmoid emerges up from the hotspot created in the solid substrate into the air within the microwave cavity. The experimental diagnostics employed for the fireball characterization in this study include measurements of microwave scattering, optical spectroscopy, small-angle X-ray scattering (SAXS), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDS). Various characteristics of these plasmoids as dusty plasma are drawn by a theoretical analysis of the experimental observations. Aggregations of dust particles within the plasmoid are detected at nanometer and micrometer scales by both - SAXS and SEM measurements. The resemblance of these plasmoids to the natural ball-lightning (BL) phenomenon is discussed with regard to silicon nano-particle clustering and formation of slowly-oxidized silicon micro-spheres within the BL. Potential applications and practical derivatives of this study (e.g., direct conversion of solids to powders, material identification by breakdown spectroscopy (MIBS), thermite ignition, and combustion) are discussed.

摘要

本文介绍了通过将局部微波功率(2.45GHz时<1kW)导向微波腔内的硅基衬底而获得的等离子体团(火球)的实验特性。等离子体团从固体衬底中产生的热点向上进入微波腔内的空气中。本研究中用于火球特性表征的实验诊断方法包括微波散射测量、光谱学、小角X射线散射(SAXS)、扫描电子显微镜(SEM)和能量色散X射线光谱(EDS)。通过对实验观测结果的理论分析,得出了这些作为尘埃等离子体的等离子体团的各种特性。通过SAXS和SEM测量,在纳米和微米尺度上检测到了等离子体团内尘埃颗粒的聚集。关于硅纳米颗粒聚集以及在球状闪电(BL)中形成缓慢氧化的硅微球,讨论了这些等离子体团与自然球状闪电现象的相似性。还讨论了本研究的潜在应用和实际衍生成果(例如,固体直接转化为粉末、通过击穿光谱进行材料识别(MIBS)、铝热剂点火和燃烧)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdb4/5452649/7f2ded6866ec/materials-06-04011-g001.jpg

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