·      Dowden, R.L., C.J.Rodger, J.B.Brundell, and M.A.Clilverd, Decay of whistler-induced electron precipitation and cloud-ionosphere discharge Trimpis: Observations and analysis, Radio Sci., 36(1), 151, 2001.

·      Dowden, R.L., C.J.Rodger, and D.Nunn, Minimum sprite plasma density as determined by VLF scattering, IEEE Antennas and Propagation Mag., (in press), 2001.

·      Hardman, S.F., R.L.Dowden, J.B.Brundell, J.L.Bahr, Z.I.Kawasaki, and C.J.Rodger, Sprite observations in the Northern Territory of Australia, J. Geophys. Res., 105(4), 4689-4697, 2000.

·      Rodger, C.J., J.R.Wait, R.L.Dowden, and N.R.Thomson, Radiating conducting columns inside the Earth-ionosphere waveguide: Application to red sprites, J. Atmos. Sol. Terr. Phys., 60, 1193-1204, 1998.

·      Rodger,C.J., and R.L.Dowden, Position determination of red sprites by scattering of VLF subionospheric transmissions, Geophys. Res. Lett., 25(3), 281-284, 1998.

·      Hardman, S.F., C.J.Rodger, R.L.Dowden, and J.B.Brundell, Measurements of the VLF scatter pattern of the structured plasma of red sprites, IEEE Antennas and Propagation Mag., 40(2), 29-38, 1998.

·      Rodger, C.J., N.R.Thomson, and R.L.Dowden, Are whistler ducts created by thunderstorm electrostatic fields?, J. Geophys. Res., 103(2), 2171-2178, 1998.

·      Rodger, C.J., N.R.Thomson, and R.L.Dowden, Testing the formulation of Park and Dejnakarintra [1973] to calculate thunderstorm DC electric fields, J. Geophys. Res., 103(2), 2163-2170, 1998.

·      Dowden, R.L., C.J.Rodger, and J.B.Brundell, Logarithmic decay and doppler shift of plasma associated with sprites, J. Atmos. Sol. Terr. Phys., 60(7-9), 741-753, 1998.

·      Rodger, C.J., J.R.Wait, and R.L.Dowden, Scattering of VLF from an experimentally described sprite, J. Atmos. Sol. Terr. Phys., 60(7-9), 765-769, 1998.

·      Rodger, C.J., J.R.Wait, and R.L.Dowden, VLF scattering from red sprites-theory, J. Atmos. Sol. Terr. Phys., 60(7-9), 755-763, 1998.

·      Dowden, R. L., Hardman, S., Brundell, J. B., Bahr, J. L., Kawasaki, Z., and Nomura, K., Red Sprites observed in Australia, IEEE Antennas and Propagation Mag., 39(6) 106, December, 1997.

·      Ohta, K., Kitagawa, T., Hayakawa, M. and Dowden, R. L., A new type of mid-latitude multipath whistler trains including a nonducted whistler, Geophysical Research Letters, 24: 2937-2940 (1997).

·      Rodger, C.J., J.R.Wait, and R.L.Dowden, Correction to "Electromagnetic scattering from a group of thin conducting cylinders", Radio Sci., 32(6), 2337, 1997.

·      Dowden, R.L.and C.J.Rodger, Decay of a vertical plasma column: A model to explain VLF sprites, Geophys. Res. Lett., 24(22), 2765-2768, 1997.

·      Dowden, R.L., J.B.Brundell, and C.J.Rodger, Temporal evolution of very strong Trimpis observed at Darwin, Australia, Geophys. Res. Lett., 24(19), 2419-2422, 1997.

·      Rodger, C.J., J.R.Wait, and R.L.Dowden, Electromagnetic scattering from a group of thin conducting cylinders, Radio Sci., 32(3), 907-912, 1997.

·      Dowden, R.L.and C.J.Rodger, A vertical plasma slab model for determining the lower limit to plasma density in Sprite columns for VLF scatter measurements, IEEE Antennas and Propagation Mag., 39(2), 44-53, April 1997.

·      Dowden, R.L., J.B.Brundell, C.J.Rodger, O.A.Molchanov, W.A.Lyons, and T.Nelson, The structure of red sprites determined by VLF scattering, IEEE Antennas and Propagation Mag., 38(3), 7-15, June 1996.

·      Dowden, R.L., Brundell, J. and Lyons, W. A., Are VLF rapid onset, rapid decay perturbations produced by scattering off sprite plasma? J. Geophysical Research, 101:19,175-19,183 (1996).

·      Ohta, K., Kitagawa, T., Shima, N., Hayakawa, M. and Dowden, R. L., Characteristics of mid-latitude whistler ducts as deduced from ground-based measurements, Geophysical Research Letters, 23:3301-3304 (1996).

·      Dowden, R.L., Comment on “VLF signatures of ionospheric disturbances associated with sprites” by Inan et al., Geophysical Research Letters, 23:3421-3422 (1996).

·      Dowden, R.L., Brundell, J., Rodger, C.J., Molchanov, O.A., Lyons, W. A. and Nelson, T., The structure of red sprites and elves determined by VLF scattering, IEEE Antennas and Propagation Magazine, 38(3), 7-15, June, 1996.

·      Dowden, R.L., Distortion of Trimpi shapes by high altitude winds, J. Geophysical Research, 101:315-321 (1996).

·      Dowden, R.L., Brundell, J., Lyons, W. A. and Nelson, T., Detection and location of red sprites by VLF scattering of subionospheric transmissions, Geophysical Research Letters, 23:1737-1740 (1996).

·      Rodger, C. J., N. R. Thomson, and R. L. Dowden, VLF line radiation observed by satellite, J. Geophys. Res., 100: 5681 - 5689, 1995.

·      Dowden, R.L., Adams, C.D.D., Brundell, J. and Dowden, P.E., Rapid onset, rapid decay (RORD), phase and amplitude perturbations of VLF subionospheric transmissions, J. Atmospheric and Terrestrial Physics., 56:1513-1527 (1994).

·      Friedel, R.H. W., Hughes, A.R., Dowden, R.L., and Adams, C.D.D., First observations of Trimpi Events at Durban (L=1.69) using an OMSKI receiver, J. Geophysical Research, 98:1571-1580 (1993).

·      Dowden, R.L., and Adams, C.D.D., Size and location of lightning-induced ionisation enhancements from measurement of VLF phase and amplitude perturbations on multiple antennas, J. Atmospheric and Terrestrial Physics., 55:1335-1359 (1993).

·      Dowden, R.L., Adams, C.D.D., VLF Holography, The Radioscientist, 4:60-65 (1993).

·      Dowden, R.L., Adams, C.D.D. and Cotton, P.D., Use of VLF transmissions in the location and mapping of lightning-induced ionisation enhancements (LIEs), J. Atmospheric and Terrestrial Physics., 54:1355-1373 (1992).

·      Dowden, R.L., and Adams, C.D.D., Ionospheric heating by VLF transmitters? J. Atmospheric and Terrestrial Physics., 54:1051–1059 (1992).

·      Dowden, R.L., and Adams, C.D.D., VLF versus MF heating of the lower ionosphere, J. Geophysical Research, 96:14,179 (1991).

·      Dowden, R.L., Adams, C.D.D., Rietveld, M.T., Stubbe, P.and Kopka, H., Phase and amplitude perturbations on subionospheric signals produced by a moving patch of artificially heated ionosphere J. Geophysical Research, 96:239 (1991).