ADVANCES IN POLAR SCIENCE ›› 2012, Vol. 23 ›› Issue (2-English): 55-71.DOI: 10.3724/SP.J.1085.2012.00055
• Reviews • Next Articles
LIU Ruiyuan&YANG Huigen
Received:
2012-05-03
Online:
1962-06-30
Published:
1962-06-30
Contact:
LIU Ruiyuan
LIU Ruiyuan&YANG Huigen. Progress in polar upper atmospheric physics research in China[J]. ADVANCES IN POLAR SCIENCE, 2012, 23(2-English): 55-71.
1 Wu H, Qian Z H, et al. China Today: China’s Antarctic Research Undertakings in Modern Times(in Chinese). Beijing: Contemporary China Publishing House, 1994, 1-5482 Liu R Y. Advances in China in the study of solar-terrestrial physics in Antarctica. Geomagnetism, Atmosphere, Space Research and Applications(in Chinese), ed. By Xu W Y. Beijing: Seismological Press, 1996, 125-1363 Liu R Y, Yang H G, Qian S L, et al. the Upper Atmosphere Comprehensive Observations System and its application at Zhongshan Station, Antarctica. The Research of Antarctica’s response and feedback to Global Change(in Chinese), ed. By Chen LX. Beijing: Ocean press, 2004, 249-2584 Lu D R, et al. the Comprehensive Observations and Study of Solar-Terrestrial’s Overall Behavior in Antarctica. Chinese Antarctica scientific research and progress, ed. By Chinese Artic and Antarctic Administration. Beijing: Ocean press, 1998, 537-5435 Cao C, Wang S L, Xi D L. Analysis of the Ionospheric Data from 1986 to 1988 Obtained at the Great Wall Station of China, Antarctic. Chinese J. of Radio Science(in Chinese), 1992, 7(2):39-46 6 Cao C. A Comparison of Ionospheric Characteristic at Two Station with Similar Geomagnetic Latitudes. Chinese Journal of Radio Science(in Chinese), 1993, 8(2):84-917 Zeng W M, Cao C, Wu J. Analysis of the ionospheric anomaly over Great Wall station, Antarctica. Antarctic Research (Chinese Edition), 1994, 6(3):33-378 Zhen W M, Cao C, Wu J, et al. Investigations on Relationship between Ionospheric Disturbance and Neutral Winds during Geomagnetic Storms at the Great Wall Station, Antarctic. Chinese Journal of Radio Science(in Chinese), 1995, 10(3):76-799 Liu R Y, Qian S L, He L S. Preliminary experimental results about the digisonde portable sounder-4 at Zhongshan station, Antarctica. Chinese J. Geophys. (in Chinese), 1997, 12(4):109-11810 Liu S L, He L S, Liu R Y. Mean ionospheric properties in winter at Zhongshan station, Antarctica. Chinese Journal of Polar Research (in Chinese), 1997, 9(3):192-19711 Shen C S, Zi M Y, Wang J S, et al. The features of f0F2 at Zhongshan station of Antarctica. Chinese Journal of Polar Research (in Chinese), 2003, 15(3):186-19412 He L S, Liu Y H, Liu R Y. The average feature of ionosphere in solar minimum at Zhongshan Station. 1998, Chinese Yearbook of Geophysics13 He L S, Liu R Y, Liu S L, et al. Overall properties of F region around solar minimum at Zhongshan Station, Antarctica. Chinese J. Geophys. (in Chinese), 2000, 43(3):289-29514 Shen C S, Zi M Y, Wang J S, et al. Features of the polar ionosphere over the Zhongshan station in Antarctic. Chinese J. Geophys. (in Chinese), 2005, 48(1):1-615 Liu S L, Liu R Y, He L S. The high-latitude ionospheric phenomena observed by DPS-4 at Zhongshan Station, Antarctica. Chinese Journal of Polar Science, 1999, 10(2): 141-14816 Xu Z H, Liu R Y, Liu S L. Variations of the ionospheric F2 layer critical frequency at Zhongshan Station, Antarctica. Chinese J. Geophys. (in Chinese), 2006, 49(1):1-817 He L S, Liu R Y, Liu S L, et al. Seasonal characteristics of F region in lower solar activity period at Zhongshan Station, Antarctica. Chinese Journal of Polar Science, 1999, 10(2):149-15418 Alfonis L, Kavanagh A J, Amata E, et al. Probing the high latitude ionosphere from ground-based observations: The state of current knowledge and capabilities during IPY (2007 2009), J. Atmos. Solar-Terr. Phys. , 2009, 70(18):2293-230819 Liu R Y, He L S, Hu H Q, et al.. Ionospheric absorption at Zhongshan Station , Antarctica during magnetic storms in early May, 1998, Chinese Journal of Polar Science, 1999, 10(2):133-14020 Nishino M, H Yamagishi, N Sato, et al. Initial Results of Imaging Riometer Observations at Polar Cap Conjugate Stations, Proc. NIPR, Upper Atmos. Phys. , 1998, 12:58-7221 Nishino M, H Yamagishi, N Sato, et al. Post-noon ionospheric absorption observed by the imaging riometers at polar cusp/cap conjugate stations, Chinese Journal of Polar Science, 1999, 10(2):125-13222 Nishino M, Yamagishi H, Sato N, et al. Conjugate features of dayside absorption associated with specific changes in the solar wind observed by inter-hemispheric high-latitude imaging riometers, Advances on Polar Upper Atmosphere Research, 2000, 14:76-9223 Yamagishi H, Y Fujita, N Sato, et al. Interhemispheric conjugacy of auroral poleward expansion observed by conjugate imaging riometers at ~67°and 75°-77°invariant latitude. Advances on Polar Upper Atmosphere Research, 2000, 14:12-3324 Deng Z X, Liu R Y, Zhao Z Y, et al. Polar ionospheric absorptions during solar storms at the end of October, 2003. Chinese Journal of Polar Research (in Chinese), 2005, 17(1):23-3125 Deng Z X, Liu R Y, Zhao Z Y, et al. Statistical Characteristics of Ionospheric Absorption Spike Events at Zhongshan Station. Chinese Journal of Space Science (in Chinese), 2006, 3:172-17626 Wan W X, Liu L B, M L Parkinson, et al. The effect of fluctuating ionospheric electric fields on Es-occurrence at cusp and polar cap latitudes. Adv. Space Res. , 2001, 27(6-7):1283-128827 Meng Y, Wang Z M, E D C, et al. Research of Polar TEC fluctuations and polar patches during magnetic storm using GPS. Chinese J. Geophys. (in Chinese), 51(1):17-2428 Cai H T, Ma S Y, Schlegel K. Climatologic characteristics of high-latitude ionosphere- EISCAT observations and comparison with the IRI model. Chinese J. Geophys. (in Chinese), 2005, 48(3):471-47929 Liu Y C, Ma S Y, Cai H T, et al. The background ionospheric profiles at polar cusp latitudes – ESR observations. Chinese Journal of Polar Research (in Chinese), 2005, 17(3):193-20230 Zhang Q H, Zhang B C, Liu R Y, et al. On the importance of interplanetary magnetic field |By| on polar cap patch formation, 2011, 116(A05308), doi:10.1029/2010JA01628731 Zhou G C, Wang D J. Electrostatic Ion Cyclotron and Ion Acoustic Wave Instabilities Driven by Upgoing Oxygen Ion (O+) Beams on Auroral Field Lines. Chinese Journal of Space Science (in Chinese), 1987, 7(2):103-11632 Song L T, Wang X W. Alfvén travelling surge with parallel electric field- auroral particle acceleration mechanism. Chinese J. Geophys. (in Chinese), 1995, 38(1):6-1533 Song L T. A two-dimensional model of the westward traveling surge. Chinese Journal of Space Science (in Chinese), 1989, 9(1):13-1934 Tai H S. The Ratio of OI 5557 to N2+ 3914 under Diffuse Auroral Condition. Chinese Journal of Space Science (in Chinese), 1985, 5(1):34-3935 Cao C. The Diurnal Variation of the Occurrence of Pulsating Aurora over DAVIS. Chinese Journal of Radio Science, 1986, 1(4):7-1436 Xi D L. The diurnal and seasonal variations of the auroral absorptions. Antarctic Research (in Chinese), 1988, 1(2):54-5837 Jorma Kangas, Cao C. Pulsating aurora----a review. Antarctic Research, 1995, 6(1):39-5038 Hu H Q, Liu R Y, Wang J F, et al. Statistic characteristics of the auroral observed at Zhongshan station, Antarctica. Chinese Journal of Polar Research (in Chinese), 1999, 11(1):8-1839 Yang H G, Liu R Y, Huang D H, et al. An all-sky auroral video image analyzing system. Chinese J. Geophys. (in Chinese), 1997, 40(5):606-61540 Yang H G, Liu R Y, Sato N. Intensity correction in all-sky auroral image projection transform. Chinese Science Bulletin, 1997, 42(8):37-4041 Yang H, N Sato, K Makita, et al. Synoptic observations of auroras along the postnoon oval: A survey with all-sky TV observations at Zhongshan, Antarctica, J. Atmos. Sol. Terr. Phys., 2000, 62:787-79742 Hu Z J, Yang H G, Ai Y, et al. Multiple wavelengths observations of dayside auroras in visible range-A preliminary result of the first wintering auroral observations in Chinese Arctic Station at Ny-?lesund. Chinese Journal of Polar Research (in Chinese), 2005, 17(2):107-11443 Hu Z J, Yang H G, Huang D H, et al. Synoptic distribution of dayside aurora: Multiple-wavelength all-sky observation at Yellow River Station in Ny-?lesund, Svalbard, J. Atmos. Sol. Terr. Phys., 2009, 71(6):794-80444 Wang Q, Liang J, Hu Z J, et al. Spatial texture based automatic classification of dayside aurora in all-sky images, J. Atmos. Sol. Terr. Phys., 2010, 72:498-50845 Hu Z J, Yang H G, Liang J, et al. The 4-emission-core structure of dayside aurora oval observed by al-sky imager at 557.7 nm in Ny-?lesund, Svalbard, 2010, 72:638-64246 Zhang Q H, M W Dunlop, M Lockwood, et al. Simultaneous observations of reconnection pulses at Cluster and their effects on the cusp aurora observed ant the Chinese Yellow River Station, 2010, 115(A10237), doi:10.1029/2010JA01552647 Yang Y H, Tang K Y, Liu R Y, et al. Analyzing of the aurora and geomagnetic disturbance in Zhongshan station, Antarctica. Chinese Journal of Polar Research (in Chinese), 1999, 11(3):228-23448 Hu H Q, Liu R Y, Wang J F, et al. Postnoon Aurora Observed at Zhongshan Station, Antarctica During Magnetic Disturbance—A case Study. Chinese J. of Radio Science(in Chinese), 1999, 14(s):31-3449 Hu H Q, Liu R Y, Yang H G, et al. Postnoon Aurora Observed at Zhongshan Station, Antarctica During Quiet Period—A case Study. J. Wuhan Univ. (Nat. Sci. Ed.)(in Chinese), 1999, 45(5A):639-64250 Hu H Q, Liu R Y, Yang H G, et al. Dependence of the postnoon auroral intensity upon the solar wind parameters. Chinese Journal of Polar Research (in Chinese), 2001, 13(3):151-15851 Hu H Q, Liu R Y, Yang H G, et al. Dependence of the postnoon auroral intensity upon the IMF. Chinese J. Geophys. (in Chinese), 2002, 45(4):445-45252 Hu H Q, Liu R Y, Yang H G. Dependences of postnoon auroral intensity on solar wind-magnetosphere coupling functions. Chinese Journal of Space Science (in Chinese), 2006, 26(4):241-24953 Hong M H, Hu H Q, Liu R Y, et al. Nightside auroral arcs in high latitudes during substorms and their relationship with IMF. Chinese J. Geophys. (in Chinese), 2001, 44(1):1202354 Hong M H, Wang X M, D Chua, et al. Auroral substorm response to solar wind pressure shock. Chinese Science Bulletin, 2001, 46(18):1547-155155 Sato N, Y Murata, H Yamagishi, et al. Simultaneous observations of Syowa East HF radar and Zhongshan Station optical aurora associated with the solar wind negative pressure impulse. Chinese Journal of Polar Science, 1999, 10(2):81-8856 Sato N, Y Murata, H Yamagishi, et al. Enhancement of optical aurora triggered by the solar wind negative pressure impulse (SI-), Geophysics Research Letter, 2001, 28(1):127-13057 Liu J J, Hu H Q, Han D S, et al. Decrease of auroral intensity associated with reversal of plasma convection in response to an interplanetary shock as observed over Zhongshan in Antarctica. Journal of Geophys. Res., 2010, 116(A03210), doi:10.1029/2010JA01615658 Cai H T, Ma S Y. Initial study of inversion method for estimating energy spectra of auroral precipitating particle from ground-based IS radar observations. Chinese J. Geophys. (in Chinese), 2007, 50(1):10-1759 Liu J M, Zhang B C, Liu R Y, et al. Effects of the precipitation electrons on the polar ionosphere with different energy spectrum. Chinese J. Geophys. (in Chinese), 2009, 52(6):1429-143760 Chen H F, Xu W Y. Variations of inner magnetospheric currents during the magnetic storm of May 1998. Chinese J. Geophys. (in Chinese), 2001, 44(4):490-49961 Shen C S, Zi M J, Gao Y F, et al. Geomagnetic responses to the convection field, field-aligned current and auroral electrojet. Chinese J. Geophys. (in Chinese), 1999, 42(6):725-73162 Xu W Y. Eigen mode analysis of the equivalent ionospheric current system in the polar region during substorms. Progress in Geophysics (in Chinese), 1999, 14(Supplement):36-4263 Xu W Y, Sun W. A study on the multi-component substorm current, Chinese Journal of Polar Science, 2000, 11:53-5864 Sun W, Xu W Y, and S I Akasofu. An improved method to deduce the unloading component for magnetospheric substorms, J. Geophys. Res., 2000, 105(A6):13131-1314065 Xu W Y, Chen G X. Quantitative analysis of the relationship between polar ionospheric currents and auroral electrojet indices. Science in China(Ser. D: Earth Sci.), 2005, 48(3):376-38366 Xu W Y. Variations of the auroral electrojet belt during substorms. Chinese J. Geophys. (in Chinese), 2009, 52(3):607-61567 Liu R Y, Zhu Y Q. Ionospheric drift properties and its response to the IMF conditions at Zhongshan station, Antarctica. Chinese J. Geophys. (in Chinese), 1999, 42(1):30-4068 Zhang Q H, Liu R Y, Huang J Y, et al. Characteristics of the magnetic flux transfer events on April 1 of 2004. Chinese Journal of Polar Research, 19(2):121-13069 Zhang Q H, Liu R Y, Huang J Y, et al. Simultaneous Cluster and Cutlass observations of FTEs on 11 February 2004. Chinese J. Geophys., 2008, 51(1):1-970 Zhang Q H, Liu R Y, M W Dunlop, et al. Simultaneous tracking of reconnected flux tubes: Cluster and conjugate SuperDARN observations on 1 April 2004, Ann. Geophys., 2008, 26:1545-155771 Hu H, T K Yeoman, M Lester, et al. Dayside flow bursts and high latitude reconnection when the IMF is strongly northward, Ann. Geophys., 2006, 24:2227-224272 Yang S F, Xiao F H. The characteristics of Pc3 pulsations at Great Wall station of Antarctica. Antarctic Research (in Chinese), 1994, 6(2):62-6773 Yang S F, Du A M, Chen B S. The characteristics of Pc3 pulsations at Zhongshan station of Antarctica. Chinese J. Geophys. (in Chinese), 1997, 40(3):311-31674 Yang S F, Du A M, Chen B S. Observation and analyses of geomagnetic pulsations at Zhongshan station, Antarctica. Chinese Journal of Polar Research (in Chinese), 1997, 9(1):58-6575 Liu Y H, Liu R Y, Yang S F, et al. Propagation characteristics of the Pc3 frequency range pulsation in the cusp latitudes. Chinese Journal of Polar Research (in Chinese), 2000, 12(2):121-12876 Liu Y H, Liu R Y, Yang S F, et al. propagation and origin of Pc5 frequency range pulsation in the cup latitude. Chinese J. Geophys. (in Chinese), 2001, 44(z1):8-1577 Liu Y H, Liu R Y, Yang S F, et al. A study of the Pc3 pulsation in the cusp latitudes by short based-line. Chinese J. Geophys. (in Chinese), 2001, 44(z1):16-2178 Liu Y H, Liu R Y, Hu H Q, et al. Study and observation of the great solar event in July of 2000 at cusp latitude. Chinese Journal of Polar Research (in Chinese), 2001, 13(3):205-21279 Yang S F, Liu Y H. Polarization characteristics of pc3 pulsations at Zhongshan Station of Antarctica. Chinese Journal of Polar Science, 1999, 10(2):155-16380 Han D S, Yang H G, Chen Z T, et al. Coupling of perturbations in the solar wind density to global Pi3 pulsations: A case study, J. Geophys. Res., 2007, 112(A05217), doi:10.1029/2006JA01167581 Liu Y H, B J Fraser, S T Ables, et al. Transverse-scale size of Pc3 ULF waves near the exterior cusp, J. Geophys. Res., 2009,114(A08208), doi:10.1029/2008JA01397182 Shi R, Zhao Z Y, Zhang B C. Study of the influence of IAR on geomagnetic signal observed on the ground, Chinese Journal of Geophysics, 2010, 53(5):693-70383 Liu Y H, B J Fraser, Liu R Y, et al. Conjugate phase studies of the ULF waves in the Pc5 band near the cusp, J. Geophys. Res. , 2003, 108(A7), 1247, doi:10.1029/2002JA00933684 Huang D H, Moen J, Brekke A, et al. Zhongshan conjugate point study during auroral substorms. Chinese J. Geophys. (in Chinese), 2004, 47(1):54-6085 Hu H Q, Liu R Y, Yang H G, et al. Cross correlations of geomagnetic field variations between Zhongshan and Arctic stations. Chinese J. Geophys. (in Chinese), 2006, 49(5):1321-132886 Xu W Y. A comparative study on the ionospheric current systems in the Antarctic and Arctic regions. Antarctic Research (in Chinese), 1994, 6(1):8-1687 Zhu A Q, Zhang B C, Huang J Y, et al. Comparative study of winter polar ionospheric F2 layer in both hemispheres. Chinese Journal of Polar Research (in Chinese), 2008, 20(1):31-3988 Liu R Y, Hu H Q, Liu Y H, et al. Responses of the polar ionosphere to the Bastille Day solar event. Solar Physics, 2001, 204(1-2):307-31589 Liu R Y, Hu H Q, He L S, et al. Multiple ground-based observations at Zhongshan Station during the April/May 1998 solar events, Science in China (Series A), 2002, 45(9):120-13190 Hu H Q, Liu R Y, Liu Y H, et al. The polar ionosphere at Zhongshan Station on May 11, 1999, the day the solar wind almost disappeared. Science in China(Ser. A), 2002, 45(S1):161-16691 Hu H Q, Liu R Y, Liu Y H, et al. the intense ionospheric absorptions associated with R9077. Chinese Journal of Space Science (in Chinese), 2002, 22(1):13-2092 He L S, M Nishino, Zhang B C, et al. Absorption events associated with solar flares. Chinese Science Bulletin, 2001, 46(5):369-37293 Liu R Y, Liu S L, Wen B, et al. ionospheric effects of the march 13, 1989 magnetic storm at subauroral region. Antarctic Research (Chinese Edition), 1994, 6(1):17-2494 Xu W Y, Chen G X, Du A M, et al. Key points model for polar region currents. J. Geophys. Res. , 2008, 113(A3), A03S11, doi:10.1029/2007JA01258895 Han D S, Yang H G, M Nosé et al. Dawnside particle injection caused by sudden enhancement of solar wind dynamic pressure. J. Atmos. Solar-Terr. Phys., 2008, 70(16): 1995-199996 Han D S, Yang H G, Liang J, et al. High-latitude reconnection effect observed at the dayside dip equator as a precursor of a sudden impulse. J. Geophys. Res., 2010, 115(A08214), doi:10.1029/2009JA01478797 Liu J M, Zhang B C, Y Kamide, et al. Spontaneous and trigger-associated substorms compared: Electrodynamic parameters in the polar ionosphere. J. Geophys. Res., 2011, 116( A01207), doi:10.1029/2010JA01577398 Wu J, Blanc M, Alcayde D. The ionospheric polar wind observations with EISCAT VHF radar. Chinese J. Geophys. (in Chinese). 1993, 36(1):9-1799 Wu J, Blanc M, Alcayde D, et al. Observations of the structure and vertical transport of the polar upper ionosphere with the EISCAT VHF radar,2.First investigations of the topside O+ and H+ vertical ion flows. Ann. Geophysicae,1992, 10: 375-393100 Wu J, Tiaeb C, et al. Heat flux solution of the 13-moment approximation transport equations in a multispecies gas. J. Geophys. Res., 1993, 98(A9): 15613-15619101 Wu J, Tiaeb C. Heat flux and thermal conduction in O+ and H+ ion flows deduced from EISCAT-VHF radar observations in the high-latitude topside ionosphere. J. Geophys. Res., 1994, 99(A6): 11483-11494102 Zheng C Q, Wu J. A computation of the incoherent radar spectra of non-maxwellian plasma in the high-latitude ionosphere. Chinese J. Geophys. (in Chinese), 1994, 37(4):433-439103 Xue K, Xu B, Wu J, et al. Relaxation model of incoherent scatter spectra calculation. Progress in Natural Science(in Chinese) , 2007, 17(11): 1565-1571104 Xu B, Xue K, Wu J, et al. Incoherent scatter spectra from plasma of a 13-moment approximation distribution function. Sci. in China(Ser. E :Tech. Sci.), 2008, 51(5):624-631105 Xu K, Guo L X, Wu J, et al. the ion distribution function from Maxwell molecule collision model and calculations of incoherent scatter spectra. Chinese J. of Space Science, 2009, 29(3):287-295106 Xue K, Guo L X, Wu J, et al. 16-moment approximation for ion velocity distribution and its application in calculations of incoherent scattering spectra. Plasma Science and Technology, 2009, 11(2): 152-158107 Xue K, Guo L X, Wu J, et al. Application of 20-moment approximation for ion velocity distribution function in calculations of incoherent scatter spectra. Chinese J. Geophys. (in Chinese), 2009, 52(4):878-886108 Xu B, Wu Z S, W J, et al. incoherent scatter spectrum of a collisional plasma. China Phys. Soc. (in Chinese), 2009, 58(7):5104-5110109 Wu J, Che H Q, Wu J, et al. A simulation of the heating effect of high power radio wave on the lower polar ionosphere. Chinese J. of Polar Research (in Chinese), 2007, 19(3):171-180110 Xu B, Wu Z S, Wu J, et al. Inversion of incoherent scatter spectra during ionosphere heating. Chinese Journal of Radio Science (in Chinese), 2008, 23(4):713-716111 Xu B, Wu J, Wu J, et al. Observations of the heating experiments in the polar winter ionosphere. Chinese J. Geophys. (in Chinese), 2009, 52(4):859-877112 Li H L, Wu J, Liu R Y, et al. The statistics analysis of mesosphere summer echoes observed by DPS-4 at Zhongshan station, Antarctica. Chinese Journal of Polar Research (in Chinese), 2007, 19(1):1-9113 Li H L, Wu J, Huang J Y, et al. Preliminary analysis on the relationship between polar mesosphere summer echoes and frequency. Chinese J. of Space Science (in Chinese), 2007, 27(5):416-419114 Li H L, Wu J, Huang J Y, et al. Scattering of electromagnetic wave by charged dust in polar mesopause. Chinese Journal of Radio Science (in Chinese), 2008, 23(4):686-688115 Li H L, Wu J, Zhang Y, et al. Study on relationship between reflecting characteristic of polar mesosphere summer echoes with frequency. Journal of China Academy of electronics and information Technology (in Chinese), 2008, 3(5):474-477116 Shi Y X, Ge D B, Wu J. Influence of charge and discharge processes of dust particles on the dust plasma conductivity. Chin. Phys. Soc. (in Chinese), 2006, 55(10):5318-5323117 Shi Y X, Wang J, Wu J, et al. Characteristic parameters estimation of two weakly ionized dusty plasma. Chinese Journal of Radio Science (in Chinese), 23(1):95-99118 Shi Y X, Wu J, Ge D B. The research on the dielectric tensor of weakly ionized dust plasma. Chin. Phys. Soc. (in Chinese), 58(8):5507-5512119 Zhu M H, Cao C, Wu J. Numerical Modeling of the Ionospheric Variations over the Great Wall Station, Antarctica. Chinese J. of Space Science(in Chinese), 1997, 17(4):337-342120 Zhu M H, Cao C, Wu J. Analyses of Ionospheric Properties Over Zhongshan Station Antarctica. Chinese J. of Radio Science(in Chinese), 1996, 11(1):96-101121 Zhang B C, Liu R Y, Liu S L. Simulation study on the influences of the precipitating electrons on the polar ionosphere. Chinese J. Geophys. (in Chinese), 2001, 44(3):311-319122 Chen Z T, Zhang B C, Yang H G, et al. A simulation study on ionosphere affected by auroral particle precipitation in cusp region. Chinese Journal of Polar Research (in Chinese), 2006, 18(3):166-174123 Liu S L, Zhang B C, Liu R Y, et al. The influence of upper boundary conditions on the polar ionosphere. Chinese Journal of Space Science (in Chinese), 2005, 25(6):504-509124 Cai H T, Ma S Y, Pu Z Y. Numerical study of the auroral particle transport in the polar upper atmosphere. Sci. China(Ser. E-Tech. Sci.), 2008, 51(10):1759-1771125 Zhang B C, Y Kamide, Liu R Y. Response of electron temperature to field-aligned current carried by thermal electrons: A model, J. Geophys. Res., 2003, 108(A5), 1169, doi:10.1029/2002JA009532126 Zhang B C, Y Kamide, Liu R Y et al. A modeling study of ionospheric conductivities in the high-latitude electrojet regions, J. Geophys. Res., 2004, 109(A04310), doi:10.1029/2003JA010181 |
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