富勒烯辐照导致氮化镓材料中形成包裹氮泡的径迹

JG Mattei, M. Sall, F. Moisy, A. Ribet, E. Balanzat, C. Grygiel, I. Monnet
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摘要

氮化镓被富勒烯弹丸照射,其电子停止功率高于促进离子轨道形成所需的阈值。利用透射电镜(TEM)研究了富勒烯辐照引起的结构和化学变化。利用高分辨率透射电镜研究了离子轨迹的结构顺序和离子轨迹附近晶格中引起的应变。透射电镜研究发现了整个轨道内部存在局部非晶化现象,轨道周围的高分辨率透射电镜研究证实了纤锌矿结构存在局部应力。利用STEM -电子能量损失谱(EELS)进行了化学研究,以描述离子路径附近和内部的化学顺序。在离子轨道上绘制的化学谱图表明,Ga/N化学计量基本保持在核心轨道上,离子轨道外围表面也检测到氧化。此外,氮k近边缘精细结构研究揭示了氮泡在离子轨道内的包封性。
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Fullerene Irradiation Leads to Track Formation Enclosing Nitrogen Bubbles in GaN Material
Gallium nitride was irradiated with fullerene projectiles having an electronic stoppingpower above the threshold needed to promote ion track formation. The structural andchemical changes induced by fullerene irradiation were studied though TransmissionElectron Microscopy (TEM). High resolution TEM inquiries were performed to identifythe structural order along the ion tracks and the strain induced in the latticeneighboring the ion tracks. The TEM investigation pointed out local amorphizationinside the whole tracks and High Resolution TEM studies in the track peripheryevidence local stress in the wurtzite structure. Chemical investigations were carried outby STEM - Electron Energy Loss Spectroscopy (EELS) to describe the chemical orderin the neighboring and inside the ion path. Chemical profiles plotted across ion tracksindicate that the Ga/N stoichiometry is essentially maintained in the core track, anoxidation in the ion track periphery was also detected at the surface. Furthermore, thenitrogen k near-edge fine structure investigation reveals the encapsulation of nitrogenbubbles inside the ion tracks.
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