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D. J. Strickland, Lean, J. L., Daniell, R. E., Knight, H. K., Woo, W. K., Meier, R. R., Straus, P. R., Woods, T. N., Eparvier, F. G., McMullin, D. R., Christensen, A. B., Morrison, D., and Paxton, L. J., Constraining and validating the Oct/Nov 2003 X-class EUV flare enhancements with observations of FUV dayglow and E -region electron densities, Journal of Geophysical Research, vol. 112, no. A6, 2007.
S. M. Buhari, Abdullah, M., Hasbi, A. M., Otsuka, Y., Yokoyama, T., Nishioka, M., and Tsugawa, T., Continuous generation and two-dimensional structure of equatorial plasma bubbles observed by high-density GPS receivers in Southeast Asia, Journal of Geophysical Research: Space Physics, vol. 119, no. 12, pp. 10,569 - 10,580, 2014.
M. Galand and Lummerzheim, D., Contribution of proton precipitation to space-based auroral FUV observations, Journal of Geophysical Research, vol. 109, no. A3, 2004.
E. S. Miller, Makela, J. J., Groves, K. M., Kelley, M. C., and Tsunoda, R. T., Coordinated study of coherent radar backscatter and optical airglow depletions in the central Pacific, Journal of Geophysical Research, vol. 115, no. A6, 2010.
J. Comberiate and Paxton, L. J., Coordinated UV imaging of equatorial plasma bubbles using TIMED/GUVI and DMSP/SSUSI, Space Weather, vol. 8, no. 10, 2010.
T. Ai Chen, Tang, Y., Zhang, L. Jun, Chang, Y. E., and Zheng, C., Correction of astigmatism and coma using analytic theory of aberrations in imaging spectrometer based on concentric off-axis dual reflector system, Applied Optics, vol. 53, no. 4, p. 565, 2014.
W. Wan, Xiong, J., Ren, Z., Liu, L., Zhang, M. - L., Ding, F., Ning, B., Zhao, B., and Yue, X., Correlation between the ionospheric WN4 signature and the upper atmospheric DE3 tide, Journal of Geophysical Research, vol. 115, no. A11, 2010.
J. Park, Min, K. W., Parks, G. K., Zhang, Y., Lee, J. - J., Baker, J. B. H., Kim, H. J., Hwang, J., Yumoto, K., Uozumi, T., and Lee, C. N., Dayside and nightside segments of a polar arc: The particle characteristics, Journal of Geophysical Research, vol. 117, no. A7, 2012.
Y. Zhang and Paxton, L. J., Dayside convection aligned auroral arcs, Geophysical Research Letters, vol. 33, no. 13, 2006.
T. S. Ram, Lei, J., Su, S. - Y., Liu, C. H., Lin, C. H., and Chen, W. S., Dayside ionospheric response to recurrent geomagnetic activity during the extreme solar minimum of 2008, Geophysical Research Letters, vol. 37, no. 2, p. n/a - n/a, 2010.
A. G. Burns, Solomon, S. C., Wang, W., Qian, L., Zhang, Y., and Paxton, L. J., Daytime climatology of ionospheric N m F 2 and h m F 2 from COSMIC data, Journal of Geophysical Research, vol. 117, no. A9, 2012.
A. V. Mikhailov, Depueva, A. H., and Depuev, V. H., Daytime F2-layer negative storm effect: what is the difference between storm-induced and Q-disturbance events?, in Annales Geophysicae, 2007.
E. E. Pacheco and Yizengaw, E., The day-to-day longitudinal variability of the global ionospheric density distribution at low latitudes during low solar activity, Journal of Geophysical Research: Space Physics, vol. 118, no. 4, pp. 1813 - 1823, 2013.
M. Aggarwal, Joshi, H. P., Iyer, K. N., Kwak, Y. - S., Lee, J. J., Chandra, H., and Cho, K. S., Day-to-day variability of equatorial anomaly in GPS-TEC during low solar activity period, Advances in Space Research, vol. 49, no. 12, pp. 1709 - 1720, 2012.
S. Basu, Basu, S., Huba, J., Krall, J., McDonald, S. E., Makela, J. J., Miller, E. S., Ray, S., and Groves, K., Day‐to‐day variability of the equatorial ionization anomaly and scintillations at dusk observed by GUVI and modeling by SAMI3, Journal of Geophysical Research, vol. 114, no. A4, 2009.
H. Kil, Paxton, L. J., Lee, W. K., Ren, Z., Oh, S. - J., and Kwak, Y. - S., Is DE2 the source of the ionospheric wave number 3 longitudinal structure?, Journal of Geophysical Research, vol. 115, no. A11, 2010.
G. W. Prölss, Density Perturbations in the Upper Atmosphere Caused by the Dissipation of Solar Wind Energy, Surveys in Geophysics, vol. 32, no. 2, pp. 101 - 195, 2011.
I. Cherniak, ii and Zakharenkova, I., Dependence of the high-latitude plasma irregularities on the auroral activity indices: a case study of 17 March 2015 geomagnetic storm, Earth, Planets and Space, vol. 6710261121474341051131839883110921092424830183294391141248812431666325546115262211911691118, no. 1A8518A3A62A236A7362A93447–8A749A1112, 2015.
D. Pallamraju, Chakrabarti, S., and Solomon, S. C., On deriving incident auroral particle fluxes in the daytime using combined ground-based optical and radar measurements, Journal of Geophysical Research, vol. 116, no. A4, 2011.
D. C. Humm, Paxton, L. J., Christensen, A. B., Ogorzalek, B. S., Pardoe, C. T., Meng, C. - I., Morrison, D., Strickland, D. J., Evans, J. S., Weiss, M. B., Crain, W., Lew, P. H., Mabry, D. J., Goldsten, J. O., Gary, S. A., Peacock, K., Persons, D. F., Harold, M. J., Alvarez, E. B., and Ercol, C. J., {Design and performance of the Global Ultraviolet Imager (GUVI)}, in EUV, X-Ray, and Gamma-Ray Instrumentation for Astronomy IX, 1998.
W. Bo Sui, Song, K. Fei, and Zhang, P. Jie, The Design of Space Scanning Mirror Control System Based on Optimal Tracking Controller, Advanced Materials Research, vol. 546-547, pp. 790 - 794, 2012.
W. Jing, Yi, T. A. N. G., Zhi-Ge, Z. H. A. N. G., Xu-Li, Z. H. E. N. G., and Guo-Qiang, N. I., Determination of the Ionospheric Electron Density Profile from FUV Remote Sensing Measurements, Chinese Journal of Geophysics, vol. 56, no. 2, pp. 109 - 116, 2013.
Y. Nishimura, Kikuchi, T., Shinbori, A., Wygant, J., Tsuji, Y., Hori, T., Ono, T., Fujita, S., and Tanaka, T., Direct measurements of the Poynting flux associated with convection electric fields in the magnetosphere, Journal of Geophysical Research, vol. 115, no. A12, 2010.
M. V. Klimenko and Klimenko, V. V., Disturbance dynamo, prompt penetration electric field and overshielding in the Earth’s ionosphere during geomagnetic storm, Journal of Atmospheric and Solar-Terrestrial Physics, vol. 90-91, pp. 146 - 155, 2012.
Y. Zhang, Paxton, L. J., Meng, C. - I., Morrison, D., Wolven, B., Kil, H., and Christensen, A. B., Double dayside detached auroras: TIMED/GUVI observations, Geophysical Research Letters, vol. 31, no. 10, 2004.
M. Zettergren, Semeter, J., Burnett, B., Oliver, W., Heinselman, C., Blelly, P. - L., and Diaz, M., Dynamic variability in F-region ionospheric composition at auroral arc boundaries, Annales Geophysicae, vol. 28, no. 2, pp. 651 - 664, 2010.
R. Kataoka, Nishitani, N., Ebihara, Y., Hosokawa, K., Ogawa, T., Kikuchi, T., and Miyoshi, Y., Dynamic variations of a convection flow reversal in the subauroral postmidnight sector as seen by the SuperDARN Hokkaido HF radar, Geophysical Research Letters, vol. 34, no. 21, 2007.
I. Cherniak, ii, Zakharenkova, I., and Redmon, R. J., Dynamics of the high-latitude ionospheric irregularities during the 17 March 2015 St. Patrick's Day storm: Ground-based GPS measurements, Space Weather, vol. 13, no. 9, pp. 585 - 597, 2015.
V. Kunitsyn, Andreeva, E., Nesterov, I., Padokhin, A., Gribkov, ii, D., and Rekenthaler, D. A., Earthquake Prediction Research Using Radio Tomography of the Ionosphere, vol. 150. Cham: Springer International Publishing, 2014, pp. 109 - 132.
B. Zhao, Wang, M., Wang, Y., Ren, Z., Yue, X., Zhu, J., Wan, W., Ning, B., Liu, J., and Xiong, B., East-west differences in F -region electron density at midlatitude: Evidence from the Far East region, Journal of Geophysical Research: Space Physics, vol. 118, no. 1, pp. 542 - 553, 2013.
A. Jain, Tiwari, S., Jain, S., and Gwal, A., EC response during severe geomagnetic storms near the crest of equatorial ionization anomaly, Indian Journal of Radio & Space Physics, vol. 39, pp. 11-24, 2010.
S. L. England, Immel, T. J., Sagawa, E., Henderson, S. B., Hagan, M. E., Mende, S. B., Frey, H. U., Swenson, C. M., and Paxton, L. J., Effect of atmospheric tides on the morphology of the quiet time, postsunset equatorial ionospheric anomaly, Journal of Geophysical Research, vol. 111, no. A10, 2006.
W. Kyoung Lee, Kil, H., Paxton, L. J., Zhang, Y., and Shim, J. Soon, The effect of geomagnetic-storm-induced enhancements to ionospheric emissions on the interpretation of the TIMED/GUVI O/N 2 ratio, Journal of Geophysical Research: Space Physics, vol. 118, no. 12, pp. 7834 - 7840, 2013.
S. L. England, Zhang, X., Immel, T. J., Forbes, J. M., and DeMajistre, R., The effect of non-migrating tides on the morphology of the equatorial ionospheric anomaly: seasonal variability, Earth Planets Space, vol. 61, pp. 493–503, 2009.
H. Kil, Lee, W. K., Shim, J., Paxton, L. J., and Zhang, Y., The effect of the 135.6 nm emission originated from the ionosphere on the TIMED/GUVI O/N 2 ratio, Journal of Geophysical Research: Space Physics, vol. 118, no. 2, pp. 859 - 865, 2013.
Y. Sahai, de Jesus, R., Fagundes, P. R., Selhorst, C. L., de Abreu, A. J., S. Ram, T., Aragon-Angel, A., Pillat, V. G., Abalde, J. R., Lima, W. L. C., and Bittencourt, J. A., Effects observed in the equatorial and low latitude ionospheric F-region in the Brazilian sector during low solar activity geomagnetic storms and comparison with the COSMIC measurements, Advances in Space Research, vol. 50, no. 10, pp. 1344 - 1351, 2012.
A. G. Burns, Solomon, S. C., Qian, L., Wang, W., Emery, B. A., Wiltberger, M., and Weimer, D. R., The effects of Corotating interaction region/High speed stream storms on the thermosphere and ionosphere during the last solar minimum, Journal of Atmospheric and Solar-Terrestrial Physics, vol. 83, pp. 79 - 87, 2012.
M. Chakraborty, Kumar, S., De, B. Kumar, and Guha, A., Effects of geomagnetic storm on low latitude ionospheric total electron content: A case study from Indian sector, Journal of Earth System Science, vol. 124, no. 5, pp. 1115 - 1126, 2015.
M. S. Bagiya, Hazarika, R., Laskar, F. I., Sunda, S., Gurubaran, S., Chakrabarty, D., Bhuyan, P. K., Sridharan, R., Veenadhari, B., and Pallamraju, D., Effects of prolonged southward interplanetary magnetic field on low-latitude ionospheric electron density, Journal of Geophysical Research: Space Physics, vol. 119, no. 7, pp. 5764 - 5776, 2014.
S. M. Park, Kim, H., Min, S., Park, J., Lee, J. H., Kil, H., Paxton, L. J., Su, S. - Y., Lee, J., and Min, K. W., Effects of solar activity variations on the low latitude topside nighttime ionosphere, Advances in Space Research, vol. 42, no. 4, pp. 626 - 633, 2008.
K. Min, Kim, H., Park, J., Kil, H., Lee, J., and Lee, E., {Effects of Solar Activity Variations on the Low Latitude Topside Nighttime Ionosphere}, in 36th COSPAR Scientific Assembly, 2006.
L. Qian, Burns, A. G., Wang, W., Solomon, S. C., Zhang, Y., and Hsu, V., Effects of the Equatorial Ionosphere Anomaly on the Inter-Hemispheric Circulation in the Thermosphere, Journal of Geophysical Research: Space Physics, 2016.
T. Das, Roy, B., and Paul, A., Effects of transionospheric signal decorrelation on Global Navigation Satellite Systems (GNSS) performance studied from irregularity dynamics around the northern crest of the EIA, Radio Science, vol. 49, no. 10, pp. 851 - 860, 2014.
D. J. Strickland, Daniell, R. E., Meier, Jr., R. R., and Lean, J. L., E-Layer Variations During an X-Class Flare Inferred from Far Ultraviolet Dayglow Observations, Proceedings, Ionospheric Effects Symposium, Alexandria VA. 2005.
D. J. Strickland, Daniell, R. E., Meier, R. R., Lean, J. L., Straus, P. R., Morrison, M. D., and Paxton, L. J., E-Layer Variations During X-Class Flares Inferred from Far Ultraviolet Dayglow Observations, AGU Fall Meeting Abstracts, p. B1222, 2005.
D. G. Baishev, Barkova, E. S., Stepanov, A. E., Rich, F., and Yumoto, K., Electric fields and large-scale undulations in the evening sector of the diffuse auroral zone, Geomagnetism and Aeronomy, vol. 50, no. 1, pp. 41 - 47, 2010.
A. D. Richmond and Fang, T. - W., Electrodynamics of the equatorial evening ionosphere: 2. Conductivity influences on convection, current, and electrodynamic energy flow, Journal of Geophysical Research: Space Physics, p. n/a - n/a, 2015.
N. M. Polekh, Kushnarenko, G. P., Pirog, O. M., Kolpakova, O. E., and Kuznetsova, G. M., Electron concentration variations in the F1-region during magnetic storms in a low solar activity period, Geomagnetism and Aeronomy, vol. 51, no. 8, pp. 1121 - 1129, 2011.
B. Zhang, Lotko, W., Brambles, O., Wiltberger, M., and Lyon, J., Electron precipitation models in global magnetosphere simulations, Journal of Geophysical Research: Space Physics, vol. 120, no. 2, pp. 1035 - 1056, 2015.
Y. Zhang and Paxton, L. J., An empirical Kp-dependent global auroral model based on TIMED/GUVI FUV data, Journal of Atmospheric and Solar-Terrestrial Physics, vol. 70, no. 8-9, pp. 1231 - 1242, 2008.