Self-mode transition, oscillation and inverse hysteresis in ECR discharges

Author:

Ding Z. F.1ORCID,Yang Y. R.2ORCID,Fu S. H.3ORCID

Affiliation:

1. School of Physics, Dalian University of Technology 1 , Dalian 16024, China

2. Bolun Middle School 2 , Dalian 16031, China

3. NAURA Technology Group Co., Ltd. 3 , Beijing 100176, China

Abstract

Positive and negative feedback of microwave (MW) ECR (electron cyclotron resonance) discharges in cross magnetic field were manipulated by a three-stub coaxial tuner. Unstable ECR discharges in the positive feedback region, such as the self-mode transition between the ordinary (O)-wave mode and extraordinary (X) one, inverse hysteresis, and oscillation, were investigated using a time-resolved MW power meter, high speed camera, and thermocouple. In the positive feedback region, the self-O → X wave mode discharge transition can be driven under the “hot” wall condition, while the counterpart, namely the self-X → O wave mode transition, is observable for the “cold” wall; the inverse hysteresis and oscillation take place at low and moderate gas flow rates, respectively. The mechanism underlying the self-mode transitions and instabilities is the discharge shift due to the gas heating effect. For MW ECR discharges to become stable, as indicated in previous experiments, they should be mismatched in the negative feedback region.

Funder

National Natural Science Foundation of China

Open Funds for Science and Technology on Vacuum Technology and Physics Laboratory, Lanzhou Institute of Physics

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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