Matches in SemOpenAlex for { <https://semopenalex.org/work/W2579663005> ?p ?o ?g. }
- W2579663005 endingPage "115" @default.
- W2579663005 startingPage "109" @default.
- W2579663005 abstract "本文系统介绍了几种线形等离子体源的特点及其应用,根据激励源的不同分别称为直流、射频、甚高频、微波、双频线形等离子体源,有磁场辅助的称为磁场增强线形等离子体源。与传统的大面积等离子体源不同,线形等离子体源仅需在一维方向实现均匀、稳定的等离子体,采用多个线形结构并排,或者与被镀样品在水平/垂直方向以适当速度运动,即可获得大面积均匀的薄膜沉积。近年来,研究人员采用磁场约束技术,减少带电粒子在器壁的复合损失,进一步提高等离子体的密度、均匀度和稳定性。线形等离子体及磁场增强线形等离子体密度 > 1011 cm−3,不均匀度 1 m),被广泛用于Si3N4、SiO2、光伏电池硅本征层、纳米金刚石等薄膜的大面积沉积,具有很重要的应用价值和科学意义。 The characteristics and application of several kinds of linear plasma sources are introduced. According to the power sources for plasma systems, there are DC, RF, VHF, microwave and dual frequency linear plasma sources, which with a magnet system are called magnetic field enhanced linear plasma sources. Compared with the conventional large scale plasma sources, linear plasma sources take the advantage that they just need to obtain uniform and stable plasma in one dimension. Through the linear plasma array or moving the substrate in horizontal and vertical direction, large scale uniform thin film can be deposited. Recent years, researchers tried to use the magnetic field to confine plasma so as to reduce the recombination loss in plasma and improve the density, uniformity and stability of plasma. The linear plasma sources with the density above1011 cm−3, dis-uniformity below ±5% (L >1 m), have been applied to fabricate large scale Si3N4, SiO2, intrinsic Si and nano-diamond thin film." @default.
- W2579663005 created "2017-01-26" @default.
- W2579663005 creator A5003685637 @default.
- W2579663005 date "2012-01-01" @default.
- W2579663005 modified "2023-09-27" @default.
- W2579663005 title "Research Progress of the Linear Plasma Source Used in the Films Deposition over Large Areas" @default.
- W2579663005 cites W1971484757 @default.
- W2579663005 cites W1973479719 @default.
- W2579663005 cites W1974982090 @default.
- W2579663005 cites W1979575498 @default.
- W2579663005 cites W1981159421 @default.
- W2579663005 cites W1982302217 @default.
- W2579663005 cites W1985040679 @default.
- W2579663005 cites W1987707528 @default.
- W2579663005 cites W1991081321 @default.
- W2579663005 cites W1991866349 @default.
- W2579663005 cites W1993510541 @default.
- W2579663005 cites W1999719737 @default.
- W2579663005 cites W2001630397 @default.
- W2579663005 cites W2001821864 @default.
- W2579663005 cites W2002787266 @default.
- W2579663005 cites W2005138339 @default.
- W2579663005 cites W2005730535 @default.
- W2579663005 cites W2011126532 @default.
- W2579663005 cites W2011568012 @default.
- W2579663005 cites W2014350884 @default.
- W2579663005 cites W2014369639 @default.
- W2579663005 cites W2018059518 @default.
- W2579663005 cites W2024777091 @default.
- W2579663005 cites W2033658246 @default.
- W2579663005 cites W2034006990 @default.
- W2579663005 cites W2036874392 @default.
- W2579663005 cites W2040137041 @default.
- W2579663005 cites W2042557270 @default.
- W2579663005 cites W2042937424 @default.
- W2579663005 cites W2048051728 @default.
- W2579663005 cites W2049179518 @default.
- W2579663005 cites W2051383367 @default.
- W2579663005 cites W2051941122 @default.
- W2579663005 cites W2053533226 @default.
- W2579663005 cites W2054842938 @default.
- W2579663005 cites W2062851673 @default.
- W2579663005 cites W2066399960 @default.
- W2579663005 cites W2066563579 @default.
- W2579663005 cites W2068530903 @default.
- W2579663005 cites W2069584655 @default.
- W2579663005 cites W2073146669 @default.
- W2579663005 cites W2075910556 @default.
- W2579663005 cites W2075915070 @default.
- W2579663005 cites W2079215547 @default.
- W2579663005 cites W2088302920 @default.
- W2579663005 cites W2092132860 @default.
- W2579663005 cites W2093472426 @default.
- W2579663005 cites W2103903625 @default.
- W2579663005 cites W2105987078 @default.
- W2579663005 cites W2114885444 @default.
- W2579663005 cites W2147444056 @default.
- W2579663005 cites W2150318936 @default.
- W2579663005 doi "https://doi.org/10.12677/app.2012.24019" @default.
- W2579663005 hasPublicationYear "2012" @default.
- W2579663005 type Work @default.
- W2579663005 sameAs 2579663005 @default.
- W2579663005 citedByCount "1" @default.
- W2579663005 countsByYear W25796630052020 @default.
- W2579663005 crossrefType "journal-article" @default.
- W2579663005 hasAuthorship W2579663005A5003685637 @default.
- W2579663005 hasBestOaLocation W25796630051 @default.
- W2579663005 hasConcept C121332964 @default.
- W2579663005 hasConcept C127313418 @default.
- W2579663005 hasConcept C151730666 @default.
- W2579663005 hasConcept C171250308 @default.
- W2579663005 hasConcept C185544564 @default.
- W2579663005 hasConcept C192562407 @default.
- W2579663005 hasConcept C2816523 @default.
- W2579663005 hasConcept C39432304 @default.
- W2579663005 hasConcept C61696701 @default.
- W2579663005 hasConcept C64297162 @default.
- W2579663005 hasConcept C82706917 @default.
- W2579663005 hasConceptScore W2579663005C121332964 @default.
- W2579663005 hasConceptScore W2579663005C127313418 @default.
- W2579663005 hasConceptScore W2579663005C151730666 @default.
- W2579663005 hasConceptScore W2579663005C171250308 @default.
- W2579663005 hasConceptScore W2579663005C185544564 @default.
- W2579663005 hasConceptScore W2579663005C192562407 @default.
- W2579663005 hasConceptScore W2579663005C2816523 @default.
- W2579663005 hasConceptScore W2579663005C39432304 @default.
- W2579663005 hasConceptScore W2579663005C61696701 @default.
- W2579663005 hasConceptScore W2579663005C64297162 @default.
- W2579663005 hasConceptScore W2579663005C82706917 @default.
- W2579663005 hasIssue "04" @default.
- W2579663005 hasLocation W25796630051 @default.
- W2579663005 hasOpenAccess W2579663005 @default.
- W2579663005 hasPrimaryLocation W25796630051 @default.
- W2579663005 hasRelatedWork W1995340589 @default.
- W2579663005 hasRelatedWork W2020013937 @default.
- W2579663005 hasRelatedWork W2109901454 @default.
- W2579663005 hasRelatedWork W2118253802 @default.
- W2579663005 hasRelatedWork W2302517733 @default.