Digitale Bibliotheek
Sluiten Bladeren door artikelen uit een tijdschrift
 
<< vorige    volgende >>
     Tijdschrift beschrijving
       Alle jaargangen van het bijbehorende tijdschrift
         Alle afleveringen van het bijbehorende jaargang
           Alle artikelen van de bijbehorende aflevering
                                       Details van artikel 12 van 47 gevonden artikelen
 
 
  Composition measurement of paraelectric SrTiO3 layer
 
 
Titel: Composition measurement of paraelectric SrTiO3 layer
Auteur: Hara, Tohru
Sugiyama, Motoyasu
Chen, Shin-Chang
Verschenen in: Integrated ferroelectrics
Paginering: Jaargang 5 (1994) nr. 4 pagina's 345-350
Jaar: 1994-12-01
Inhoud: Since composition is an important parameter affecting the dielectric properties in paraelectric SrTiO3 layers, composition is determined by Rutherford backscattering spectrometry (RBS) measurement. In this measurement, specifically for achieving precise composition measurement, the RBS spectra of Sr, Ti and O must be separated individually. This spectrum separation can only be attained when thin (800 Ad` thick) SrxTiOy layers are deposited on graphite substrate. The measurement is performed for layers deposited at different O2 partial pressure ratios and sputtering pressures. This measurement indicates that composition of O, y, in SrxTiOy layer decreases from 3.7 to 2.7 with the decrease of O2 partial pressure raito, R(=O2/O2 + Ar) from 1.0 to 0.83. Composition of Sr, x, also changes from 1.1 to 0.6 with this change. With the decrease of sputtering pressure from 10 to 5 mTorr, however, composition, y, is held at 2.7 and only the composition, x, increases from 0.6 to 1.1. This composition measurement is useful for the deposition of optimized dielectric layer employed in the charge storage capacitor.
Uitgever: Taylor & Francis
Bronbestand: Elektronische Wetenschappelijke Tijdschriften
 
 

                             Details van artikel 12 van 47 gevonden artikelen
 
<< vorige    volgende >>
 
 Koninklijke Bibliotheek - Nationale Bibliotheek van Nederland