{"title":"Effect of the Magnetic field and duration time on Thickness and Structure of Silver Thin films Deposition by Magnetron Sputtering","authors":"Abdulhussain A. Khadyair, Shimaa Rajh Taly","doi":"10.31257/2018/JKP/2019/110101","DOIUrl":null,"url":null,"abstract":"Article history: Received: 12 MAR, 2018 Accepted: 10 MAY, 2018 Available Online: 3 JUL., 2019 In this paper, the effect of magnetic field on thickness of silver (Ag) thin films were deposition on glass substrates by DC magnetron sputtering method of silver target were studied, with permanent and variable magnetic field. Ag thin films with (84,89,94,269,290) nm, thickness were prepared at different deposition times (10,30,60) sec. The crystalline structure of thin films was evaluated by X-ray diffraction (XRD) and the atomic force microscopy (AFM) were employed for surface morphological studies of the films. The results show that the thickness of the films increases with increases magnetic field to 250 Gauss, and when are greater than (250Gauss) the effect of magnetic field starts to decrease and be ineffective, and also the results indicate an increase of the grain size from (144.9 -276.7) nm and films surface roughness from (0.431-22.7) nm. DOI: http://dx.doi.org/10.31257/2018/JKP/2019/110101 K e y w o r d s : Magnetic field Silver (Ag) films films thickness properties structure بيكستو كمسلا ىلع تينمزلا ةدملاو يسيطانغملا لاجملا سيثأت تيشغلأ Ag ينوستنكاملا ريذستلاب تبسسملا تقيقسلا از ءاميش حج يلات سيضخ سابع نيسحلا دبع مسق ،ءايضيفلا ،تيبشخلا تيلك تيسداقلا تعماج :تيحاخفملا ثاملكلا لا ــــ خ ـــ صلا ـــ ت","PeriodicalId":16215,"journal":{"name":"Journal of Kufa - Physics","volume":"17 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2019-06-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of Kufa - Physics","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31257/2018/JKP/2019/110101","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Article history: Received: 12 MAR, 2018 Accepted: 10 MAY, 2018 Available Online: 3 JUL., 2019 In this paper, the effect of magnetic field on thickness of silver (Ag) thin films were deposition on glass substrates by DC magnetron sputtering method of silver target were studied, with permanent and variable magnetic field. Ag thin films with (84,89,94,269,290) nm, thickness were prepared at different deposition times (10,30,60) sec. The crystalline structure of thin films was evaluated by X-ray diffraction (XRD) and the atomic force microscopy (AFM) were employed for surface morphological studies of the films. The results show that the thickness of the films increases with increases magnetic field to 250 Gauss, and when are greater than (250Gauss) the effect of magnetic field starts to decrease and be ineffective, and also the results indicate an increase of the grain size from (144.9 -276.7) nm and films surface roughness from (0.431-22.7) nm. DOI: http://dx.doi.org/10.31257/2018/JKP/2019/110101 K e y w o r d s : Magnetic field Silver (Ag) films films thickness properties structure بيكستو كمسلا ىلع تينمزلا ةدملاو يسيطانغملا لاجملا سيثأت تيشغلأ Ag ينوستنكاملا ريذستلاب تبسسملا تقيقسلا از ءاميش حج يلات سيضخ سابع نيسحلا دبع مسق ،ءايضيفلا ،تيبشخلا تيلك تيسداقلا تعماج :تيحاخفملا ثاملكلا لا ــــ خ ـــ صلا ـــ ت
本文研究了在恒磁场和变磁场条件下,用直流磁控溅射法在玻璃衬底上沉积银(Ag)薄膜对磁场厚度的影响。在不同的沉积时间(10、30、60)秒下,制备了厚度为(84、89、94、269,290)nm的银薄膜。利用x射线衍射(XRD)和原子力显微镜(AFM)对薄膜的晶体结构进行了表征。结果表明:当磁场强度达到250Gauss时,薄膜的厚度随磁场强度的增加而增加,当磁场强度大于250Gauss时,薄膜的晶粒尺寸从(144.9 ~ 276.7)nm增大,薄膜表面粗糙度从(0.431 ~ 22.7)nm增大。DOI: http://dx.doi.org/10.31257/2018/JKP/2019/110101 K e y w o r d s:磁场银(Ag)电影电影厚度属性结构بيكستوكمسلاىلعتينمزلاةدملاويسيطانغملالاجملاسيثأتتيشغلأAgينوستنكاملاريذستلابتبسسملاتقيقسلاازءاميشحجيلاتسيضخسابعنيسحلادبعمسق،ءايضيفلا،تيبشخلاتيلكتيسداقلاتعماج:تيحاخفملاثاملكلالاــــخـــصلاـــت