2014Unpublished venueRequires access

TOWNSEND BREAKDOWN ON DIELECTRIC BARRIER DISCHARGE OF COPLANARGEOMETRY

Tomáš Morávek, Zdeněk Navrátil, Ján Čech, Jozef Ráheľ

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Abstract

Experimental data presented in our contribution provide a compelling evidence of generating Townsend-mechanism controlled breakdown in barrier discharge of coplanar geometry, which is known to have a highly non-uniform electric field that favors the streamer breakdown. When pure rare gases of helium or neon were used, a slow, wide front ionization avalanche is formed and propagates over both positive and negative electrode. Time resolved images of the avalanche propagation recorded by high speed ICCD camera and single photon counting are presented, correlated with the instantaneous discharge current.

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What this paper is about

Experimental data presented in our contribution provide a compelling evidence of generating Townsend-mechanism controlled breakdown in barrier discharge of coplanar geometry, which is known to have a highly non-uniform electric field that favors the streamer breakdown. When pure rare gases of helium or neon were used, a slow, wide front ionization avalanche is formed and propagates over both positive and negative electrode. Time resolved images of the avalanche propagation recorded by high speed ICCD camera and single photon counting are presented, correlated with the instantaneous discharge current.

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Available abstract

Experimental data presented in our contribution provide a compelling evidence of generating Townsend-mechanism controlled breakdown in barrier discharge of coplanar geometry, which is known to have a highly non-uniform electric field that favors the streamer breakdown. When pure rare gases of helium or neon were used, a slow, wide front ionization avalanche is formed and propagates over both positive and negative electrode. Time resolved images of the avalanche propagation recorded by high speed ICCD camera and single photon counting are presented, correlated with the instantaneous discharge current.

Key concepts: Townsend discharge, Neon, Electron avalanche, Ionization, Avalanche breakdown, Townsend, Helium, Electric field

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