Hausdorf dimension of typical very low frequency chorus emissions and verification of their excitation mechanism
- Авторлар: Bespalov P.A.1,2, Savina O.N.2, Neshchetkin G.M.1,2
-
Мекемелер:
- Gaponov-Grekhov Institute of Applied Physics of the Russian Academy of Sciences
- Higher School of Economics National Research University
- Шығарылым: Том 88, № 3 (2024)
- Беттер: 413-419
- Бөлім: Physics of Auroral Phenomena
- URL: https://cardiosomatics.ru/0367-6765/article/view/654729
- DOI: https://doi.org/10.31857/S0367676524030106
- EDN: https://elibrary.ru/QMEEOD
- ID: 654729
Дәйексөз келтіру
Аннотация
A quantitative study of the degree of complexity of electromagnetic VLF chorus emissions in the region of their excitation near the local minimum of the magnetic field outside the plasmasphere was carried out using modern mathematical tools. From the vast observational data collected during the Van Allen Probe mission, typical examples of chorus have been selected for which high-resolution digitized data are available. The original program was used to calculate the Hausdorff dimension of long numerical sequences. In all cases, the dimension turned out to be non-integer, which indicates the complex dynamics of the system. During the calculations, jumps in dimension were noted, including its decrease by about a factor of two for a fragment of a burst of chorus. The obtained results are important for confirming the mechanism of excitation of chorus by amplifying short noise pulses and for substantiating the possibility of automatic identification of electromagnetic radiation of different types.
Негізгі сөздер
Толық мәтін

Авторлар туралы
P. Bespalov
Gaponov-Grekhov Institute of Applied Physics of the Russian Academy of Sciences; Higher School of Economics National Research University
Хат алмасуға жауапты Автор.
Email: PBespalov@mail.ru
Ресей, Nizhny Novgorod; Nizhny Novgorod
O. Savina
Higher School of Economics National Research University
Email: PBespalov@mail.ru
Ресей, Nizhny Novgorod
G. Neshchetkin
Gaponov-Grekhov Institute of Applied Physics of the Russian Academy of Sciences; Higher School of Economics National Research University
Email: PBespalov@mail.ru
Ресей, Nizhny Novgorod; Nizhny Novgorod
Әдебиет тізімі
- Bell T.F., Inan U.S., Hague N., Pickett J.S. // Geophys. Res. Lett. 2009. V. 36. Art. No. L11101.
- Kletzing C.A., Kurth W.S., Acuna M. et al. // Space Sci. Rev. 2013. V. 179. P. 127.
- https://emfisis.physics.uiowa.edu/Flight.
- Eckman J.P., Ruelle D. // Rev. Mod. Phys. 1985. V. 57. P. 617.
- Takens F. // Lect. Notes Math. 1981. V. 898. P. 366.
- Grassberger P., Procaccia I. // Phys. Rev. Lett. 1983. V. 50. P. 346.
- Henon M. // Commun. Math. Phys. 1976. V. 50. P. 69.
- Шустер Г. Детерминированный хаос. Введение. М.: Мир, 1988. 248 с.
- Малинецкий Г.Г., Потапов А.В. Современные проблемы нелинейной динамики. М.: Эдиториал УРСС, 2000. 336 с.
- Moon F.C. Chaotic vibrations: an introduction for applied scientists and engineers. New York: Wiley-Interscience, 1987. 309 p.
- Trakhtengerts V.Y. // J. Geophys. Res. 1995. V. 100. P. 17205.
- Omura Y., Katoh Y., Summers D. // J. Geophys. Res. A. 2008. V. 113. Art. No. A04223.
- Bespalov P., Savina O. // Ann. Geophys. 2018. V. 36. P. 1201.
- Беспалов П.А., Савина О.Н., Жаравина П.Д. // Косм. иссл. 2022. Т. 60. С. 17.
Қосымша файлдар
