Research Article

The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through

Volume: 16 Number: 1 March 15, 2021
EN

The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through

Abstract

In this study, the seasonal changes of (Ey/E0), which was obtained from the WKB (Wentzel, Kramers, Brillouin) solution, for (-300 ;300) geographic latitudes and (390,410,450,500,550 and 600 Km) altitudes in the equatorial anomaly region were investigated. (Ey/E0) ratio takes minimum value in latitudes, where the electron density is at maximum levels and takes maximum value in places where the electron density is at minimum levels, respectively. It is possible to say that in places where the electron density is at maximum, the wave transfers energy to the medium, otherwise it receives energy from the medium.

Keywords

References

  1. Kurt, K., Yeşil, A., Sagir, S., Atici, R. The relationship of stratospheric QBO with the difference of measured and calculated NmF2, Acta Geophysica 64 (6) (2016), pp2781-2793
  2. Unal, I., Senalp, E.T., Yeşil, A., Tulunay, Y., Tulunay, E. Performance of IRI-based ionospheric critical frequency calculations with reference to forecasting, Radio Science 46 (01) (2011), pp1-10
  3. Yesil, A., Sagir S., Kurt, K., The Behaviour of the Classical Diffusion Tensor for Equatorial Ionospheric Plasma, Journal of Science, 13(2016), pp123-127
  4. Yesil, A., Unal, I., Electromagnetic Wave Propagation in Ionospheric Plasma, Behaviour of Electromagnetic Waves in Different Media and Structures, pp 189
  5. Yesil, A., Sagir, S., Updating Conductivity Tensor of Cold and Warm Plasma for Equatorial Ionosphere F2-Region in The Northern Hemisphere, Iranian Journal of Science and Technology, Transactions A: Science 43 (1) (2019), pp 315-320
  6. Sagir, S., Yesil. A., The Relation Between the Refractive Index of the Equatorial Ionospheric F2 Region and Long-Term Solar Indices, Wireless Personal Communications 102 (1)(2018), pp 31-40
  7. Yesil, A., Sagir, S., Kurt, K., The Behavior of the Classical Diffusion Tensor for Mid-Latitude Ionospheric Plasma, Bitlis Eren Üniversitesi Fen Bilimleri Dergisi 5 (2) (2016)
  8. Sagir, S., Karatay, S., Atici, R., Yesil A., Ozcan, O., The relationship between the Quasi Biennial Oscillation and Sunspot Number, Advances in Space Research 55(1) (2015), pp 106-112

Details

Primary Language

English

Subjects

-

Journal Section

Research Article

Authors

Publication Date

March 15, 2021

Submission Date

August 22, 2020

Acceptance Date

September 17, 2020

Published in Issue

Year 2021 Volume: 16 Number: 1

APA
Yeşil, A. (2021). The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through. Turkish Journal of Science and Technology, 16(1), 31-38. https://izlik.org/JA74WD26CC
AMA
1.Yeşil A. The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through. TJST. 2021;16(1):31-38. https://izlik.org/JA74WD26CC
Chicago
Yeşil, Ali. 2021. “The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through”. Turkish Journal of Science and Technology 16 (1): 31-38. https://izlik.org/JA74WD26CC.
EndNote
Yeşil A (March 1, 2021) The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through. Turkish Journal of Science and Technology 16 1 31–38.
IEEE
[1]A. Yeşil, “The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through”, TJST, vol. 16, no. 1, pp. 31–38, Mar. 2021, [Online]. Available: https://izlik.org/JA74WD26CC
ISNAD
Yeşil, Ali. “The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through”. Turkish Journal of Science and Technology 16/1 (March 1, 2021): 31-38. https://izlik.org/JA74WD26CC.
JAMA
1.Yeşil A. The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through. TJST. 2021;16:31–38.
MLA
Yeşil, Ali. “The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through”. Turkish Journal of Science and Technology, vol. 16, no. 1, Mar. 2021, pp. 31-38, https://izlik.org/JA74WD26CC.
Vancouver
1.Ali Yeşil. The Change of The Magnitude of The Electric Field Vector (EyE0) in The Ionosphere in The Magnetic Equator Through. TJST [Internet]. 2021 Mar. 1;16(1):31-8. Available from: https://izlik.org/JA74WD26CC