Detail publikačního výsledku

Characterization of a Low-Cost Kilohertz-Driven Plasma Pen Operated in Ar Gas

HORVÁTH, G.; MORAVSKÝ, L.; KRČMA, F.; MATEJČÍK, Š.

Originální název

Characterization of a Low-Cost Kilohertz-Driven Plasma Pen Operated in Ar Gas

Anglický název

Characterization of a Low-Cost Kilohertz-Driven Plasma Pen Operated in Ar Gas

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

This work describes the physical properties of a self-designed kilohertz-driven plasma pen operated in Ar designed for biomedical applications. The special design of the plasma pen resulted in stable operation at gas flow as low as 100 cm^3/min. Important plasma parameters such as electron concentration n_e, electron temperature T_e and gas temperature T_g, and geometry of the discharge jet were estimated using both electric measurements and optical emission spectroscopy.

Anglický abstrakt

This work describes the physical properties of a self-designed kilohertz-driven plasma pen operated in Ar designed for biomedical applications. The special design of the plasma pen resulted in stable operation at gas flow as low as 100 cm^3/min. Important plasma parameters such as electron concentration n_e, electron temperature T_e and gas temperature T_g, and geometry of the discharge jet were estimated using both electric measurements and optical emission spectroscopy.

Klíčová slova

atmospheric pressure plasma jet, cold plasma, optical emission spectroscopy, plasma temperature

Klíčová slova v angličtině

atmospheric pressure plasma jet, cold plasma, optical emission spectroscopy, plasma temperature

Autoři

HORVÁTH, G.; MORAVSKÝ, L.; KRČMA, F.; MATEJČÍK, Š.

Rok RIV

2014

Vydáno

01.03.2013

ISSN

0093-3813

Periodikum

IEEE TRANSACTIONS ON PLASMA SCIENCE

Svazek

41

Číslo

3

Stát

Spojené státy americké

Strany od

613

Strany do

619

Strany počet

7

BibTex

@article{BUT97388,
  author="HORVÁTH, G. and MORAVSKÝ, L. and KRČMA, F. and MATEJČÍK, Š.",
  title="Characterization of a Low-Cost Kilohertz-Driven Plasma Pen Operated in Ar Gas",
  journal="IEEE TRANSACTIONS ON PLASMA SCIENCE",
  year="2013",
  volume="41",
  number="3",
  pages="613--619",
  issn="0093-3813"
}