Observation of multiple current free helicon double layers

A combination of three strong current free double layers (CFDLs) characterized by strength (eΔΦ/Te) ∼ 10 and widths (Δz/λD) ∼ 7.6, 8, and 8.3 has been observed in argon helicon plasma. In contrast to other works report on the same subject, in the present investigations the DLs form in a mirror-like...

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Published inApplied physics letters Vol. 103; no. 18
Main Authors Sahu, B. B., Ganguli, A., Tarey, R. D.
Format Journal Article
LanguageEnglish
Published Melville American Institute of Physics 28.10.2013
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ISSN0003-6951
1077-3118
DOI10.1063/1.4828559

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Abstract A combination of three strong current free double layers (CFDLs) characterized by strength (eΔΦ/Te) ∼ 10 and widths (Δz/λD) ∼ 7.6, 8, and 8.3 has been observed in argon helicon plasma. In contrast to other works report on the same subject, in the present investigations the DLs form in a mirror-like magnetic field topology and present in the plateau regions of magnetic field. Using the measurement of radio frequency compensated Langmuir Probe consistent with the B-dot probe diagnostic, a qualitative mechanism of DL formation has also been discussed.
AbstractList A combination of three strong current free double layers (CFDLs) characterized by strength (eΔΦ/Te) ∼ 10 and widths (Δz/λD) ∼ 7.6, 8, and 8.3 has been observed in argon helicon plasma. In contrast to other works report on the same subject, in the present investigations the DLs form in a mirror-like magnetic field topology and present in the plateau regions of magnetic field. Using the measurement of radio frequency compensated Langmuir Probe consistent with the B-dot probe diagnostic, a qualitative mechanism of DL formation has also been discussed.
A combination of three strong current free double layers (CFDLs) characterized by strength (e Delta Phi /Te) similar to 10 and widths ( Delta z/ lambda D) similar to 7.6, 8, and 8.3 has been observed in argon helicon plasma. In contrast to other works report on the same subject, in the present investigations the DLs form in a mirror-like magnetic field topology and present in the plateau regions of magnetic field. Using the measurement of radio frequency compensated Langmuir Probe consistent with the B-dot probe diagnostic, a qualitative mechanism of DL formation has also been discussed.
Author Sahu, B. B.
Ganguli, A.
Tarey, R. D.
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Snippet A combination of three strong current free double layers (CFDLs) characterized by strength (eΔΦ/Te) ∼ 10 and widths (Δz/λD) ∼ 7.6, 8, and 8.3 has been observed...
A combination of three strong current free double layers (CFDLs) characterized by strength (e Delta Phi /Te) similar to 10 and widths ( Delta z/ lambda D)...
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SubjectTerms Applied physics
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Magnetic fields
Magnetism
Title Observation of multiple current free helicon double layers
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