A novel Deal–Grove-inspired model for fluorine-based plasma jet etching of borosilicate crown optical glass

dc.bibliographicCitation.firstPage2000218eng
dc.bibliographicCitation.issue3eng
dc.bibliographicCitation.journalTitlePlasma processes and polymerseng
dc.bibliographicCitation.volume18eng
dc.contributor.authorKazemi, Faezeh
dc.contributor.authorBoehm, Georg
dc.contributor.authorArnold, Thomas
dc.date.accessioned2021-12-10T06:37:44Z
dc.date.available2021-12-10T06:37:44Z
dc.date.issued2021
dc.description.abstractThe Deal–Grove model is a state-of-the-art approach proposed for describing the thermal oxidation of silicon and the oxide thickness over time. In this study, the Deal–Grove concept provided the inspiration for a mathematical model for simulating plasma jet-based dry etching process of borosilicate crown glass (N-BK7®). The whole process is contained in two so-called Deal–Grove parameters, which are extracted from experimental data including local etching depth and surface temperature distribution. The proposed model is extended for the evolution of dynamic etch profiles, and the obtained results are validated experimentally. By establishing such a model, it is possible to predict the effect of the residual layer and surface temperature on the evolution of local etching depths over dwell time.eng
dc.description.versionpublishedVersioneng
dc.identifier.urihttps://oa.tib.eu/renate/handle/123456789/7669
dc.identifier.urihttps://doi.org/10.34657/6716
dc.language.isoengeng
dc.publisherHoboken, NJ : Wiley Interscienceeng
dc.relation.doihttps://doi.org/10.1002/ppap.202000218
dc.relation.essn1612-8869
dc.rights.licenseCC BY 4.0 Unportedeng
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/eng
dc.subject.ddc530eng
dc.subject.ddc540eng
dc.subject.otherDeal–Grove modeleng
dc.subject.otherthermal oxidationeng
dc.subject.othersiliconeng
dc.titleA novel Deal–Grove-inspired model for fluorine-based plasma jet etching of borosilicate crown optical glasseng
dc.typeArticleeng
dc.typeTexteng
tib.accessRightsopenAccesseng
wgl.contributorIOMeng
wgl.subjectPhysikeng
wgl.typeZeitschriftenartikeleng
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