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Results 1-10 of 16 (Search time: 0.005 seconds).
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Issue DateTitleAuthor(s)
2016Investigation of magnetic field measurements recorded by low earth orbiting satellitesThomas, Neethal
2016Investigation on Solar-interplanetary and magnetosphere coupling and geoeffectivenessSelvakumaran, R.
2015Variation of surface electric field during geomagnetic disturbed period at Maitri, AntarcticaVictor, N. Jeni; Panneerselvam, C.; Kumar, C.P. Anil
2016On the reduced geoeffectiveness of solar cycle 24: A moderate storm perspectiveSelvakumaran, R.; Veenadhari, B.; Akiyama, S.; Pandya, Megha; Gopalswamy, N.; Yashiro, S.; Kumar, Sandeep; Makela, P.; Xie, H.
2010Nonlinear low-frequency structures in the auroral plasma in the presence of an oxygen beam including charge separationMoolla, S.; Bharuthram, R.; Singh, S.V.; Lakhina, G.S.; Reddy, R.V.
2015Electromagnetic ion cyclotron waves in the Earth’s magnetosphere with a kappa-Maxwellian particle distributionSugiyama, Hajime; Singh, S.V.; Omura, Yoshiharu; Shoj, Masafumi; Nunn, David; Summers, Danny
2011Electron acoustic solitons in the presence of an electron beam and superthermal electronsDevanandhan, S.; Singh, S.V.; Lakhina, G.S.; Bharuthram, R.
2017Dynamics of ionospheric irregularities in increasing phase of 24th solar cycle at Kolhapur [16.4 deg N, 74.2 deg E]Sharma, A.K.; Chavan, G.A.; Gurav, O.B.; Gaikwad, H.P.; Ghodpage, R.N.; Nade, D.P.
2017Ionospheric annual anomaly-new insights to the physical mechanismsGowtam, V. Sai; Tulasiram, S.
2016Heliospheric plasma sheet (HPS) impingement onto the magnetosphere as a cause of relativistic electron dropouts (REDs) via coherent EMIC wave scattering with possible consequences for climate change mechanismsTsurutani, B.T.; Hajra, R.; Tanimori, T.; Takada, A.; Bhanu, R.; Mannucci, A.J.; Lakhina, G.S.; Kozyra, J.U.; Shiokawa, K.; Lee, L.C.; Echer, E.; Reddy, R.V.; Gonzalez, W.D.