Original URL: https://swaves.gsfc.nasa.gov/SWAVES_Pubs_AsOfJan2010.html, downloaded 18 July 2022

STEREO WAVES Journal Publications

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2010

 

1. Eastwood, J. P., M. S. Wheatland, H. S. Hudson, S. Krucker, S. D. Bale, M. Maksimovic, K. Goetz, and J.-L. Bougeret. On the brightness and waiting-time distributions of a type III radio storm observed by STEREO/WAVES. Astrophysical Journal Letters, in press.

2.Henri, P., Califano, F., Briand, C. & Mangeney, A. Vlasov-Poisson Simulations of electrostatic parametric instability for localized Langmuir wave packets in the solar wind. Journal of Geophysical Research (Space Physics), in press.

3. Malaspina, D. M., I. H. Cairns, & R. E. Ergun. The 2fp radiation from localized Langmuir waves. Journal of Geophysical Research (Space Physics), 115, A01101, doi:10.1029/2009JA014609 (2010).

4.Panchenko, M., H. O. Rucker, M. L. Kaiser, O. C. St. Cyr, J.-L. Bougeret, K. Goetz, & S. D. Bale, New periodicity in Jovian decametric radio emission. Journal of Geophysical Research (Space Physics), in press.

5. Zouganelis, I., M. Maksimovic, N. Meyer-Vernet, S.D. Bale, J. Eastwood, A. Zaslavsky, M. Dekkali, K. Goetz, M.L. Kaiser. Measurements of stray antenna capacitance in the STEREO/WAVES instrument: comparison of the radio voltage spectrum with the modeled electron shot noise collected on the antennas. Radio Science, in press.

 

2009

 

1.Eastwood, J. P. et al. Measurements of stray antenna capacitance in the STEREO/WAVES instrument: Comparison of the radio frequency voltage spectrum with models of the galactic nonthermal continuum spectrum. Radio Science 44, 4012 (2009).

2.Gopalswamy, N. et al. Relation Between Type II Bursts and CMEs Inferred from STEREO Observations. Solar Physics, 259, 227 (2009).

3. Henri, P. et al. Evidence for wave coupling in type III emissions. Journal of Geophysical Research (Space Physics) 114, 03103 (2009).

4. Kellogg, P. J. et al. Plasma wave measurements with STEREO S/WAVES: Calibration, potential model, and preliminary results. Journal of Geophysical Research (Space Physics) 114, 02107 (2009).

5. Liu, Y., Luhmann, J. G., Bale, S. D. & Lin, R. P. Relationship Between a Coronal Mass Ejection-Driven Shock and a Coronal Metric Type II Burst. Astrophysical Journal 691, L151-L155 (2009).

6. Meyer-Vernet, N. et al. Dust Detection by the Wave Instrument on STEREO: Nanoparticles Picked up by the Solar Wind? Solar Physics 256, 463-474 (2009).

7. Malaspina, D. M., B. Li, I. H. Cairns, P. A. Robinson, Z. Kuncic, & R. E. Ergun, Terrestrial foreshock Langmuir waves: STEREO observations, theoretical modeling, and quasi-linear simulations. Journal of Geophysical Research (Space Physics) 114, A12101, doi:10.1029/2009JA014493 (2009).

8. Oswald, T. H. et al. Various methods of calibration of the STEREO/WAVES antennas. Advances in Space Research 43, 355-364 (2009).

9. Panchenko, M. et al. Daily variations of auroral kilometric radiation observed by STEREO. Geophysical Research Letters 36, 06102 (2009).

10. Pick, M. et al. Coronal and Interplanetary Structures Associated with Type III Bursts. Solar Physics 256, 101-110 (2009).

11. Reiner, M. J. et al. Multipoint Observations of Solar Type III Radio Bursts from STEREO and Wind. Solar Physics 259, 255 (2009).

12. St. Cyr, O. C. et al. STEREO SECCHI and S/WAVES Observations of Spacecraft Debris Caused by Micron-Size Interplanetary Dust Impacts. Solar Physics 256, 475-488 (2009).

 

2008

 

1.Bale, S. D. et al. The Electric Antennas for the STEREO/WAVES Experiment. Space Science Reviews 136, 529-547 (2008).

2.Bougeret, J. L. et al. S/WAVES: The Radio and Plasma Wave Investigation on the STEREO Mission. Space Science Reviews 136, 487-528 (2008).

3.Cattell, C. et al. Discovery of very large amplitude whistler-mode waves in Earth's radiation belts. Geophysical Research Letters 35, 01105 (2008).

4.Cecconi, B. et al. STEREO/Waves Goniopolarimetry. Space Science Reviews 136, 549-563 (2008).

5.Ergun, R. E., Malaspina, D. M., Cairns, I. H., Goldman, M. V., Newman, D. L., Robinson, P. A., et al. (2008). Eigenmode Structure in Solar-Wind Langmuir Waves. Phys. Rev. Lett., 101, 051101.

6.Kaiser, M. L. et al. The STEREO Mission: An Introduction. Space Science Reviews 136, 5-16 (2008).

7. Kellogg, P. J. Measuring Electric Field and Density Turbulence in the Solar Wind. AIP Conference Proceedings (Particle Acceleration and Transport in the Heliosphere and Beyond), Volume 1039, 87-92 (2008).

8.Krucker, S. et al. Coronal Hard X-Ray Emission Associated with Radio Type III Bursts. Astrophysical Journal 681, 644-649 (2008).

9.Liu, Y. et al. A Comprehensive View of the 2006 December 13 CME: From the Sun to Interplanetary Space. Astrophysical Journal 689, 563-571 (2008).

10.Malaspina, D. M. & Ergun, R. E. Observations of three-dimensional Langmuir wave structure. Journal of Geophysical Research (Space Physics) 113, 12108 (2008).

 

2007

 

 

1. Cecconi, B. Influence of an extended source on Goniopolarimetry (or Direction Finding) with Cassini and STEREO radio receivers. Radio Science, 42, 1-17 (2007).

2.Florens, M. S. L., Cairns, I. H., Knock, S. A. & Robinson, P. A. Data-driven solar wind model and prediction of type II bursts. Geophysical Research Letters 34, 04104 (2007).

3.Macher, W., Oswald, T. H., Fischer, G. & Rucker, H. O. Rheometry of multi-port spaceborne antennas including mutual antenna capacitances and application to STEREO/WAVES. Measurement Science and Technology 18, 3731-3742 (2007).

 

2005

 

1.Cecconi, B. & Zarka, P. Direction finding and antenna calibration through analytical inversion of radio measurements performed using a system of two or three electric dipole antennas on a three-axis stabilized spacecraft. Radio Science 40, 3003 (2005).

2.Kaiser, M. L. The STEREO mission: an overview. Advances in Space Research 36, 1483-1488 (2005).

3.Rucker, H. O. et al. Analysis of spacecraft antenna systems: Implications for STEREO/WAVES. Advances in Space Research 36, 1530-1533 (2005).