Bibliography

[1]

J. G. Roederer and H. Zhang. Dynamics of Magnetically Trapped Particles. Springer, 2016.

[2]

H. E. J. Koskinen and E. K. J. Kilpua. Physics of Earth's Radiation Belts. Springer Nature, 2022. doi:10.1007/978-3-030-82167-8.

[3]

M. Schulz and L. J. Lanzerotti. Particle Diffusion in the Radiation Belts. Volume 7. Springer-Verlag, 1974. URL: http://www.springer.com/physics/book/978-3-642-65677-4.

[4]

D. L. Carpenter and R. R. Anderson. An ISEE/whistler model of equatorial electron density in the magnetosphere. Journal of Geophysical Research: Space Physics, 97(A2):1097–1108, 1992. doi:10.1029/91JA01548.

[5]

M. B. Moldwin, L. Downward, H. K. Rassoul, R. Amin, and R. R. Anderson. A new model of the location of the plasmapause: CRRES results. Journal of Geophysical Research, 107(A11):1339, 2002. doi:10.1029/2001JA009211.

[6]

T. P. O'Brien and M. B. Moldwin. Empirical plasmapause models from magnetic indices. Geophysical Research Letters, 30(4):1152, 2003. doi:10.1029/2002GL016007.

[7]

J.-H. Shue, P. Song, C. T. Russell, J. T. Steinberg, J. K. Chao, G. Zastenker, O. L. Vaisberg, S. Kokubun, H. J. Singer, T. R. Detman, and H. Kawano. Magnetopause location under extreme solar wind conditions. Journal of Geophysical Research, 103(A8):17691–17700, 1998. doi:10.1029/98JA01103.

[8]

N. A. Tsyganenko and M. I. Sitnov. Modeling the dynamics of the inner magnetosphere during strong geomagnetic storms. Journal of Geophysical Research, 110(A3):A03208, 2005. doi:10.1029/2004JA010798.

[9]

H. Volland. A semiempirical model of large-scale magnetospheric electric fields. Planetary and Space Science, 21(6):741–750, 1973. doi:10.1016/0032-0633(73)90093-7.

[10]

D. P. Stern. Electric field models in the magnetosphere. Reviews of Geophysics and Space Physics, 13(3):547–558, 1975. doi:10.1029/RG013i003p00547.

[11]

A. F. Ali, D. M. Malaspina, S. R. Elkington, A. N. Jaynes, A. A. Chan, J. Wygant, and C. A. Kletzing. Electric and magnetic radial diffusion coefficients using the Van Allen probes data. Journal of Geophysical Research: Space Physics, 121(10):9586–9607, 2016. doi:10.1002/2016JA023002.

[12]

D. H. Brautigam and J. M. Albert. Radial diffusion analysis of outer radiation belt electrons during the October 9, 1990, magnetic storm. Journal of Geophysical Research, 105(A1):291–309, 2000. doi:10.1029/1999ja900344.

[13]

Y. Liu, Q.-G. Zong, X.-Z. Zhou, J. C. Foster, and R. Rankin. Structure and evolution of electron "zebra stripes" in the inner radiation belt. Journal of Geophysical Research: Space Physics, 121(5):4145–4157, 2016. doi:10.1002/2015ja022077.

[14]

L. G. Ozeke, I. R. Mann, K. R. Murphy, I. Jonathan Rae, and D. K. Milling. Analytic expressions for ULF wave radiation belt radial diffusion coefficients. Journal of Geophysical Research: Space Physics, 119(3):1587–1605, 2014. doi:10.1002/2013JA019204.

[15]

X. Gu, Y. Y. Shprits, and B. Ni. Parameterized lifetime of radiation belt electrons interacting with lower-band and upper-band oblique chorus waves. Geophysical Research Letters, 39(15):L15102, 2012. doi:10.1029/2012GL052519.

[16]

X. Gu, Y. Y. Shprits, and B. Ni. Correction to "Parameterized lifetime of radiation belt electrons interacting with lower-band and upper-band oblique chorus wave". Geophysical Research Letters, 39:L17199, 2012. doi:10.1029/2012GL053568.

[17]

D. Wang, Y. Y. Shprits, B. Haas, and A. Y. Drozdov. Lifetime of Energetic Electrons due to Interactions with Chorus Waves. 2024. In preparation.

[18]

K. Orlova, Y. Shprits, and M. Spasojevic. New global loss model of energetic and relativistic electrons based on Van Allen Probes measurements. Journal of Geophysical Research: Space Physics, 121(2):1308–1314, 2016. doi:10.1002/2015JA021878.

[19]

A. Smirnov, Y. Shprits, H. Allison, N. Aseev, A. Drozdov, P. Kollmann, B. Remya, S. Wang, and M. Pzowski. Equatorial electron pitch angle distributions in Earth's outer radiation belt: Storm-time evolution and empirical modeling. In EGU General Assembly 2022. 2022. doi:10.5194/egusphere-egu22-7732.

[20]

R. E. Denton, J. Goldstein, and J. D. Menietti. Field line dependence of magnetospheric electron density. Geophysical Research Letters, 29(24):2205, 2002. doi:10.1029/2002GL015963.

[21]

R. E. Denton, J. D. Menietti, J. Goldstein, S. L. Young, and R. R. Anderson. Electron density in the magnetosphere. Journal of Geophysical Research, 109:A09215, 2004. doi:10.1029/2003JA010245.

[22]

R. E. Denton, J. Goldstein, D.-H. Lee, R. A. King, Z. C. Dent, D. L. Gallagher, W. S. Kurth, P. A. Webb, J. L. Burch, B. R. Sandel, M. F. Thomsen, J. D. Menietti, and J. Goldstein. Realistic magnetospheric density model for 29 August 2000. Journal of Atmospheric and Solar-Terrestrial Physics, 68(6):615–628, 2006. doi:10.1016/j.jastp.2005.11.009.

[23]

B. W. Sheeley, M. B. Moldwin, H. K. Rassoul, and R. R. Anderson. An empirical plasmasphere and trough density model: CRRES observations. Journal of Geophysical Research: Space Physics, 106(A11):25631–25641, 2001. doi:10.1029/2000JA000286.

[24]

D. L. Gallagher, P. D. Craven, and R. H. Comfort. A simple model of magnetospheric trough total density. Journal of Geophysical Research, 103:9293–9297, 1998. doi:10.1029/97JA03137.

[25]

Wilkins et al. Inner boundary model for radiation belt simulations. 2024. In preparation.

[26]

D. A. Subbotin, Y. Y. Shprits, and B. Ni. Long-term radiation belt simulation with the VERB 3-D code: Comparison with CRRES observations. Journal of Geophysical Research: Space Physics, 116(A12):A12210, 2011. doi:10.1029/2011JA017019.

[27]

H. Zhu, Y. Y. Shprits, M. Spasojevic, and A. Y. Drozdov. New hiss and chorus waves diffusion coefficient parameterizations from the Van Allen Probes and their effect on long-term relativistic electron radiation-belt VERB simulations. Journal of Atmospheric and Solar-Terrestrial Physics, 193:105090, 2019. doi:10.1016/j.jastp.2019.105090.

[28]

M. Spasojevic, Y. Y. Shprits, and K. Orlova. Global empirical models of plasmaspheric hiss using Van Allen Probes. Journal of Geophysical Research: Space Physics, 120(12):10,370–10,383, 2015. doi:10.1002/2015JA021803.

[29]

A. Y. Drozdov, Y. Y. Shprits, M. E. Usanova, N. A. Aseev, A. C. Kellerman, and H. Zhu. EMIC wave parameterization in the long-term VERB code simulation. Journal of Geophysical Research: Space Physics, 122(8):8488–8501, 2017. doi:10.1002/2017JA024389.