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Strong Coupling of Folded Phonons with Plasmons in 6H-SiC Micro/Nanocrystals

机译:6H-SiC微/纳米晶体中折叠声子与等离子的强耦合

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摘要

Silicon carbide (SiC) has a large number of polytypes of which 3C-, 4H-, 6H-SiC are most common. Since different polytypes have different energy gaps and electrical properties, it is important to identify and characterize various SiC polytypes. Here, Raman scattering is performed on 6H-SiC microanocrystal (MNC) films to investigate all four folded transverse optic (TO) and longitudinal optic (LO) modes. With increasing film thickness, the four folded TO modes exhibit the same frequency downshift, whereas the four folded LO modes show a gradually-reduced downshift. For the same film thickness, all the folded modes show larger frequency downshifts with decreasing MNC size. Based on plasmons on MNCs, these folded modes can be attributed to strong coupling of the folded phonons with plasmons which show different strengths for the different folded modes while changing the film thickness and MNC size. This work provides a useful technique to identify SiC polytypes from Raman scattering.
机译:碳化硅(SiC)具有大量的多型体,其中最常见的是3C-,4H-,6H-SiC。由于不同的多晶型具有不同的能隙和电特性,因此识别和表征各种SiC多晶型非常重要。在这里,在6H-SiC微/纳米晶体(MNC)薄膜上进行拉曼散射,以研究所有四个折叠的横向光学(TO)和纵向光学(LO)模式。随着膜厚度的增加,四个折叠的TO模式表现出相同的频率降档,而四个折叠的LO模式表现出逐渐降低的降档。对于相同的膜厚度,所有折叠模式在MNC尺寸减小时显示出较大的频率下移。基于MNC上的等离激元,这些折叠模式可归因于折叠声子与等离激元的强耦合,这些等离激元在改变膜厚度和MNC尺寸的同时,针对不同折叠模式显示出不同的强度。这项工作提供了一种有用的技术,可以从拉曼散射中识别出SiC多型。

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