Transverse Plasma Resonance in the Nonmagnetized Plasma and its Practical use

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fedor_mende
fedor_mende Fedor F. Mende
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F. F. Mende
F. F. Mende
1 B. Verkin Institute for Low Temperature Physics and Engineering of the National Academy of Sciences of Ukraine

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During shot explosions, which result in the formation of a hot plasma, electromagnetic radiation takes place in a very wide range, up to the radio waveband. But to date, those physical mechanisms that could explain the origin of such radiation are unknown. It is known that plasma resonance is longitudinal, but longitudinal resonance can not radiate transverse radio waves. There were no other resonances other than plasma resonances in an unmagnetized plasma. However, it turns out that in a bounded unmagnetized plasma there can also exist a transverse resonance with respect to the propagation direction of the waves. It is this resonance that can be associated with the loss of electromagnetic waves in explosions of the flow of charges. This resonance can be used to create high-power lasers and to heat the plasma.

4 Cites in Articles

References

  1. I Kossyi (2010). Resonance phenomena in microwave nonmagnetized plasma source.
  2. Ф Менде (2003). ARE THERE MISTAKES IN MODERN PHYSICS?.
  3. F Mende (2014). Consideration and the Refinement of Some Laws and Concepts of Classical Electrodynamics and New Ideas in Modern Electrodynamics.
  4. А Ярив (1973). Квантовая электроника и нелинейная оптика.

Funding

No external funding was declared for this work.

Conflict of Interest

The authors declare no conflict of interest.

Ethical Approval

No ethics committee approval was required for this article type.

Data Availability

Not applicable for this article.

fedor_mende. 2019. \u201cTransverse Plasma Resonance in the Nonmagnetized Plasma and its Practical use\u201d. Global Journal of Science Frontier Research - A: Physics & Space Science GJSFR-A Volume 19 (GJSFR Volume 19 Issue A1): .

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Crossref Journal DOI 10.17406/GJSFR

Print ISSN 0975-5896

e-ISSN 2249-4626

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GJSFR-A Classification: FOR Code: 020399
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v1.2

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March 26, 2019

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English

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During shot explosions, which result in the formation of a hot plasma, electromagnetic radiation takes place in a very wide range, up to the radio waveband. But to date, those physical mechanisms that could explain the origin of such radiation are unknown. It is known that plasma resonance is longitudinal, but longitudinal resonance can not radiate transverse radio waves. There were no other resonances other than plasma resonances in an unmagnetized plasma. However, it turns out that in a bounded unmagnetized plasma there can also exist a transverse resonance with respect to the propagation direction of the waves. It is this resonance that can be associated with the loss of electromagnetic waves in explosions of the flow of charges. This resonance can be used to create high-power lasers and to heat the plasma.

During shot explosions, which result in the formation of a hot plasma, electromagnetic radiation takes place in a very wide range, up to the radio waveband. But to date, those physical mechanisms that could explain the origin of such radiation are unknown. It is known that plasma resonance is longitudinal, but longitudinal resonance can not radiate transverse radio waves. There were no other resonances other than plasma resonances in an unmagnetized plasma. However, it turns out that in a bounded unmagnetized plasma there can also exist a transverse resonance with respect to the propagation direction of the waves. It is this resonance that can be associated with the loss of electromagnetic waves in explosions of the flow of charges. This resonance can be used to create high-power lasers and to heat the plasma.

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