光学复合介质为铁磁球形微流体光学mKdV磁通密度

3区 物理与天体物理 Q1 Engineering
Talat Körpinar, Zeliha Körpinar
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引用次数: 0

摘要

摘要本文研究了光学sn微流控mKdV模型对sn磁性mKdV光纤在球面空间中电动势的影响。得到了海森堡铁磁sn微流体mKdV的磁光通量密度。同时,构建了球形sn微流体柔性mKdV磁通量流体形状。此外,我们还建立了Heisenberg铁磁sn微流控磁通量的mKdV模型。最后,我们建立了海森堡铁磁球形锡微流控电动势的mKdV模型。关键词:光学框架;微流控;mKdV模型;mKdV电动势;
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical complex media for ferromagnetic spherical microfluidic optical mKdV magnetic flux density
AbstractThis manuscript examines the effect of optical Sn-microfluidic mKdV model for electromotive force of Sn-magnetic mKdV fiber in spherical space. Then we find Heisenberg ferromagnetical Sn-microfluidic mKdV magnetical optical flux density. Also, we construct spherical Sn-microfluidic flexible mKdV magnetical flux fluid shape. Moreover, we obtain Heisenberg ferromagnetical Sn-microfluidic mKdV model for magnetical flux. Finally, we present Heisenberg ferromagnetical spherical Sn-microfluidic mKdV model for electromotive force.Keywords: Optical framemicrofluidic mKdV modelmKdV electromotive forceflux fluid shapemKdV flux density Disclosure statementNo potential conflict of interest was reported by the author(s).
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来源期刊
Waves in Random and Complex Media
Waves in Random and Complex Media 物理-物理:综合
自引率
0.00%
发文量
677
审稿时长
3.0 months
期刊介绍: Waves in Random and Complex Media (formerly Waves in Random Media ) is a broad, interdisciplinary journal that reports theoretical, applied and experimental research related to any wave phenomena. The field of wave phenomena is all-pervading, fast-moving and exciting; more and more, researchers are looking for a journal which addresses the understanding of wave-matter interactions in increasingly complex natural and engineered media. With its foundations in the scattering and propagation community, Waves in Random and Complex Media is becoming a key forum for research in both established fields such as imaging through turbulence, as well as emerging fields such as metamaterials. The Journal is of interest to scientists and engineers working in the field of wave propagation, scattering and imaging in random or complex media. Papers on theoretical developments, experimental results and analytical/numerical studies are considered for publication, as are deterministic problems when also linked to random or complex media. Papers are expected to report original work, and must be comprehensible and of general interest to the broad community working with wave phenomena.
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