Pregled bibliografske jedinice broj: 353232
Nanoscale particles in reactive RF plasmas: size-dependent dynamics and influence on plasma
Nanoscale particles in reactive RF plasmas: size-dependent dynamics and influence on plasma // Proceedings of the 60th Gaseous Electronics Conference
Arlington (VA), 2007. str. 141-141 (pozvano predavanje, međunarodna recenzija, sažetak, znanstveni)
CROSBI ID: 353232 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Nanoscale particles in reactive RF plasmas: size-dependent dynamics and influence on plasma
Autori
Schweigert, I.V. ; Alexandrov, A.L. ; Ariskin, D.A. ; Peeters, F.M. ; Stefanovic, I. ; Kovacevic, E. ; Berndt, J. ; Winter, J.
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, sažetak, znanstveni
Izvornik
Proceedings of the 60th Gaseous Electronics Conference
/ - Arlington (VA), 2007, 141-141
ISBN
86-7306-043-5 4
Skup
60th Gaseous Electronics Conference
Mjesto i datum
Arlington (VA), Sjedinjene Američke Države, 02.10.2007. - 05.10.2007
Vrsta sudjelovanja
Pozvano predavanje
Vrsta recenzije
Međunarodna recenzija
Ključne riječi
Nanoscale particles; Plasma
Sažetak
A CCRF discharge with growing nanoparticles in Ar and C$_{; ; 2}; ; $H$_{; ; 2}; ; $ mixture was studied experimentally and with using kinetic PIC-MCC simulations. The dust particle diameter ranged from 0 to 200 nm. It was found that at an initial stage of the growth the nanoparticles are situated near the sheath-plasma boundaries where the ionization rate by the electron impact has peaks. The presence of nanoparticles strongly impacts the plasma, and at some critical nanoparticle size the discharge transits from the active sheath regime to the volume dominated mode. Growing further, the dust particles first gradually spread to discharge center and only weakly disturb plasma parameters and then they form the void. The dust particle distribution was measured using Laser Light Scattering technique. In the experiment the nanoparticles are produced and grown by plasma polymerization and we measure their dynamics from early stage until the formation of the void. Calculated and measured properties of discharge, operation modes and nanoparticle distribution agree quantitatively.
Izvorni jezik
Engleski
Znanstvena područja
Fizika
POVEZANOST RADA
Projekti:
036-0361566-1571 - Elektromagnetski metamaterijali i nanoelektromagnetizam
Ustanove:
Fakultet elektrotehnike i računarstva, Zagreb