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      KCI등재 SCOPUS

      Characteristics of the Ionospheric Mid-Latitude Trough Measured by Topside Sounders in 1960–70s

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      https://www.riss.kr/link?id=A106352478

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      다국어 초록 (Multilingual Abstract)

      The ionospheric mid-latitude trough (IMT) is the electron density depletion phenomenon in the F region during nighttime. It has been suggested that the IMT is the result of complex plasma processes coupled to the magnetosphere. In order to statistically investigate the characteristics of the IMT, we analyze topside sounding data from Alouette and ISIS satellites in 1960s and 1970s. The IMT position is almost constant for seasons and solar activities whereas the IMT depth ratio and the IMT feature are stronger and clearer in the winter hemisphere under solar minimum condition. We also calculated transition heights at which the densities of oxygen ions and hydrogen/helium ions are equal. Transition heights are generally higher in daytime and lower in nighttime, but the opposite aspects are seen in the IMT region. Utilizing the Incoherent Scatter Radar (ISR) electron temperature measurements, we find that the electron temperature in the IMT region is enhanced at night during winter. The increase of electron temperature may cause fast transport of the ionospheric plasma to the magnetosphere via ambipolar diffusion, resulting in the IMT depletion. This mechanism of the IMT may work in addition to the simply prolonged recombination of ions proposed by the traditional stagnation model.
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      The ionospheric mid-latitude trough (IMT) is the electron density depletion phenomenon in the F region during nighttime. It has been suggested that the IMT is the result of complex plasma processes coupled to the magnetosphere. In order to statistical...

      The ionospheric mid-latitude trough (IMT) is the electron density depletion phenomenon in the F region during nighttime. It has been suggested that the IMT is the result of complex plasma processes coupled to the magnetosphere. In order to statistically investigate the characteristics of the IMT, we analyze topside sounding data from Alouette and ISIS satellites in 1960s and 1970s. The IMT position is almost constant for seasons and solar activities whereas the IMT depth ratio and the IMT feature are stronger and clearer in the winter hemisphere under solar minimum condition. We also calculated transition heights at which the densities of oxygen ions and hydrogen/helium ions are equal. Transition heights are generally higher in daytime and lower in nighttime, but the opposite aspects are seen in the IMT region. Utilizing the Incoherent Scatter Radar (ISR) electron temperature measurements, we find that the electron temperature in the IMT region is enhanced at night during winter. The increase of electron temperature may cause fast transport of the ionospheric plasma to the magnetosphere via ambipolar diffusion, resulting in the IMT depletion. This mechanism of the IMT may work in addition to the simply prolonged recombination of ions proposed by the traditional stagnation model.

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      참고문헌 (Reference)

      1 Han-Byul Lee, "Where does the plasmasphere begin? Revisit to topside ionospheric profiles in comparison with plasmaspheric TEC from Jason-1" American Geophysical Union (AGU) 121 (121): 10,091-10,102, 2016

      2 Jaeheung Park, "Vertical Scale Height of the Topside Ionosphere Around the Korean Peninsula: Estimates from Ionosondes and the Swarm Constellation" 한국우주과학회 32 (32): 311-315, 2015

      3 이준현, "Variation of Floating Potential in the Topside Ionosphere Observed by STSAT-1" 한국우주과학회 31 (31): 311-315, 2014

      4 J.H. Chapman, "Topside sounding of the earth's ionosphere" Springer Science and Business Media LLC 8 (8): 1968

      5 Ivan Kutiev, "Topside sounder model of scale height and transition height characteristics of the ionosphere" Elsevier BV 39 (39): 759-766, 2007

      6 홍준석, "Tomography Reconstruction of Ionospheric Electron Density with Empirical Orthonormal Functions Using Korea GNSS Network" 한국우주과학회 34 (34): 7-17, 2017

      7 R.J. Moffett, "The mid-latitude trough in the electron concentration of the ionospheric F-layer: a review of observations and modelling" Elsevier BV 45 (45): 315-343, 1983

      8 I. T. Lee, "The ionospheric midlatitude trough observed by FORMOSAT-3/COSMIC during solar minimum" American Geophysical Union (AGU) 116 (116): 2011

      9 E. Yizengaw, "The correlation between mid-latitude trough and the plasmapause" American Geophysical Union (AGU) 32 (32): 2005

      10 Na Yang, "Statistical analysis of ionospheric mid-latitude trough over the Northern Hemisphere derived from GPS total electron content data" Springer Science and Business Media LLC 67 (67): 2015

      1 Han-Byul Lee, "Where does the plasmasphere begin? Revisit to topside ionospheric profiles in comparison with plasmaspheric TEC from Jason-1" American Geophysical Union (AGU) 121 (121): 10,091-10,102, 2016

      2 Jaeheung Park, "Vertical Scale Height of the Topside Ionosphere Around the Korean Peninsula: Estimates from Ionosondes and the Swarm Constellation" 한국우주과학회 32 (32): 311-315, 2015

      3 이준현, "Variation of Floating Potential in the Topside Ionosphere Observed by STSAT-1" 한국우주과학회 31 (31): 311-315, 2014

      4 J.H. Chapman, "Topside sounding of the earth's ionosphere" Springer Science and Business Media LLC 8 (8): 1968

      5 Ivan Kutiev, "Topside sounder model of scale height and transition height characteristics of the ionosphere" Elsevier BV 39 (39): 759-766, 2007

      6 홍준석, "Tomography Reconstruction of Ionospheric Electron Density with Empirical Orthonormal Functions Using Korea GNSS Network" 한국우주과학회 34 (34): 7-17, 2017

      7 R.J. Moffett, "The mid-latitude trough in the electron concentration of the ionospheric F-layer: a review of observations and modelling" Elsevier BV 45 (45): 315-343, 1983

      8 I. T. Lee, "The ionospheric midlatitude trough observed by FORMOSAT-3/COSMIC during solar minimum" American Geophysical Union (AGU) 116 (116): 2011

      9 E. Yizengaw, "The correlation between mid-latitude trough and the plasmapause" American Geophysical Union (AGU) 32 (32): 2005

      10 Na Yang, "Statistical analysis of ionospheric mid-latitude trough over the Northern Hemisphere derived from GPS total electron content data" Springer Science and Business Media LLC 67 (67): 2015

      11 Vitaly P. Kim, "Response of the Midlatitude F2 Layer to Some Strong Geomagnetic Storms during Solar Minimum as Observed at Four Sites of the Globe" 한국우주과학회 32 (32): 297-304, 2015

      12 S. E. Pryse, "Parameterization of the main ionospheric trough in the European sector" American Geophysical Union (AGU) 41 (41): 2006

      13 J.E. Jackson, "Objectives, history, and principal achievements of the topside sounder and ISIS programs" Institute of Electrical and Electronics Engineers (IEEE) 57 (57): 861-865, 1969

      14 Ivan S. Kutiev, "Model of topside ionosphere scale height based on topside sounder data" Elsevier BV 37 (37): 943-950, 2006

      15 G. W. Sharp, "Midlatitude trough in the night ionosphere" American Geophysical Union (AGU) 71 (71): 1345-1356, 1966

      16 W. C. Knudsen, "Magnetospheric convection and the high-latitude F 2 ionosphere" American Geophysical Union (AGU) 79 (79): 1046-1055, 1974

      17 Schunk RW, "Ionospheres: Physics, Plasma Physics, and Chemistry" Cambridge Univ. Press 2009

      18 R. W. Spiro, "Ion convection and the formation of the mid-latitude F region ionization trough" American Geophysical Union (AGU) 83 (83): 4255-, 1978

      19 L. Kersley, "Imaging of electron density troughs by tomographic techniques" American Geophysical Union (AGU) 32 (32): 1607-1621, 1997

      20 K.L. Chan, "Global electron density distributions from topside soundings" Institute of Electrical and Electronics Engineers (IEEE) 57 (57): 990-1004, 1969

      21 D. B. Muldrew, "F -layer ionization troughs deduced from Alouette data" American Geophysical Union (AGU) 70 (70): 2635-2650, 1965

      22 P. Marinov, "Empirical model of O+–H+ transition height based on topside sounder data" Elsevier BV 34 (34): 2021-2025, 2004

      23 R. A. Heelis, "Behavior of the O+/H+ transition height during the extreme solar minimum of 2008" American Geophysical Union (AGU) 36 : 2009

      24 S. G. Shepherd, "Altitude-adjusted corrected geomagnetic coordinates: Definition and functional approximations" American Geophysical Union (AGU) 119 (119): 7501-7521, 2014

      25 Henry C. Brinton, "Altitude variation of ion composition in the midlatitude trough region: Evidence for upward plasma flow" American Geophysical Union (AGU) 76 (76): 3738-3745, 1971

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      2001-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.18 0.18 0.18
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.15 0.15 0.28 0.07
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