Laser ionization and radio frequency sustainment of high-pressure seeded plasmas
نویسندگان
چکیده
The feasibility of using a photoionized, low-ionization potential organic seed gas to initiate a high pressure plasma discharge is examined and compared to radio frequency breakdown of high pressure argon alone. The seed gas, tetrakis~dimethylamino!ethylene, which has an ionization potential of 6.1 eV is ionized by an ultraviolet laser through 6.4 eV photon absorption, and forms a plasma column inside a vacuum chamber. The plasma absorbs additional power through inductive coupling of 13.56 MHz helical antenna radio frequency wave fields to the plasma through electron acceleration, ionization, and collisional damping. Laser initiation of 2–6 mTorr of the seed gas in 1–150 Torr of argon is accomplished and produces steady-state line-average plasma densities of ne'4310 12 cm in a volume of 300 cm. The two-body recombination coefficient of the organic seed gas and its optimum partial pressure when mixed with argon are experimentally determined and analyzed. Particle loss and power requirements for maintaining the discharge are evaluated by examining ionization, diffusion, and recombination processes. © 2002 American Institute of Physics. @DOI: 10.1063/1.1487905#
منابع مشابه
Laser-rf creation and diagnostics of seeded atmospheric pressure air and nitrogen plasmas
A laser initiation and radio frequency rf sustainment technique has been developed and improved from our previous work to create and sustain large-volume, high-pressure air and nitrogen plasmas. This technique utilizes a laser-initiated, 15 mTorr partial pressure tetrakis dimethylamino ethylene seed plasma with a 75 Torr background gas pressure to achieve high-pressure air/nitrogen plasma break...
متن کاملControlling plasma properties under differing degrees of electronegativity using odd harmonic dual frequency excitation
The charged particle dynamics in low-pressure oxygen plasmas excited by odd harmonic dual frequency waveforms (low frequency of 13.56 MHz and high frequency of 40.68 MHz) are investigated using a one-dimensional numerical simulation in regimes of both low and high electronegativity. In the low electronegativity regime, the time and space averaged electron and negative ion densities are approxim...
متن کاملField Ionization Mass Spectrometry of Organic Plasmas
It is demonstrated that field ionization mass spectrometry has a potential application for the detection of neutral species involved in organic plasmas. In FI mass spectra of r.f. glow discharge plasmas of aromatic compounds, reaction products were detected mainly at higher mass regions, reflecting that polymerization reactions were leading processes in these plasmas. For olefine compounds, on ...
متن کاملStudy of laser ablation using nano-second laser pulses
In this paper, the laser ablation process based on the irradiation of nanosecond pulsed lasers on a copper target surface in the presence of Helium gas is studied. The dynamical behaviors of the generated plasma in the helium gas and evaporated copper at the atmospheric pressure are examined using a laser pulse, laser wavelength of and intensity of 7×1010W/cm2. A one-dimensional thermal model ...
متن کاملEmission spectroscopy of a microhollow cathode discharge plasma in helium-water gas mixtures
Related Articles Convoluted effect of laser fluence and pulse duration on the property of a nanosecond laser-induced plasma into an argon ambient gas at the atmospheric pressure J. Appl. Phys. 113, 013304 (2013) Developing the model of laser ablation by considering the interplay between emission and expansion of aluminum plasma Phys. Plasmas 20, 013301 (2013) X-ray emission from a nanosecond-pu...
متن کامل