Solar wind and the motion of dust grains

被引:19
作者
Klacka, J. [1 ]
Petrzala, J. [1 ]
Pastor, P. [1 ,2 ]
Komar, L. [1 ]
机构
[1] Comenius Univ Mlynska Dolina, Fac Math Phys & Informat, Bratislava 84248, Slovakia
[2] Tekov Observ, Levice 93401, Slovakia
关键词
celestial mechanics; solar wind; interplanetary medium; zodiacal dust; INTERPLANETARY DUST; PARTICLES; RADIATION; RING; RESONANCES; PRESSURE; FORCES;
D O I
10.1111/j.1365-2966.2012.20321.x
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
In this paper, we investigate the action of solar wind on an arbitrarily shaped interplanetary dust particle. The final relativistically covariant equation of motion of the particle also contains the change of the particle's mass. The non-radial solar wind velocity vector is also included. The covariant equation of motion reduces to the Poynting-Robertson effect in the limiting case when a spherical particle is treated, when the speed of the incident solar wind corpuscles tends to the speed of light and when the corpuscles spread radially from the Sun. The results of quantum mechanics have to be incorporated into the physical considerations, in order to obtain the limiting case. If the solar wind affects the motion of a spherical interplanetary dust particle, then p(out)' = (1 - sigma(pr)'/sigma(tot)')p(in)'. Here, p(in)' and p(out)' are the incoming and outgoing radiation momenta (per unit time), respectively, measured in the proper frame of reference of the particle, and sigma(pr)' and sigma(tot)' are the solar wind pressure and the total scattering cross-sections, respectively. An analytical solution of the derived equation of motion yields a qualitative behaviour consistent with numerical calculations. This also holds if we consider a decrease of the particle's mass. Using numerical integration of the derived equation of motion, we confirm our analytical result that the non-radial solar wind (with a constant value of angle between the radial direction and the direction of the solar wind velocity) causes outspiralling of the dust particle from the Sun for large values of the particle's semimajor axis. The non-radial solar wind also increases the time the particle spirals towards the Sun. If we consider the periodical variability of the solar wind with the solar cycle, then there are resonances between the particle's orbital period and the period of the solar cycle.
引用
收藏
页码:943 / 959
页数:17
相关论文
共 50 条
[41]   Exclusion of Tiny Interstellar Dust Grains From the Heliosphere [J].
Slavin, J. D. ;
Frisch, P. C. ;
Heerikhuisen, J. ;
Pogorelov, N. V. ;
Mueller, H. -R. ;
Reach, W. T. ;
Zank, G. P. ;
Dasgupta, B. ;
Avinash, K. .
TWELFTH INTERNATIONAL SOLAR WIND CONFERENCE, 2010, 1216 :497-+
[42]   Fractal dust grains in plasma [J].
Huang, F. ;
Peng, R. D. ;
Liu, Y. H. ;
Chen, Z. Y. ;
Ye, M. F. ;
Wang, L. .
PHYSICS OF PLASMAS, 2012, 19 (09)
[43]   Interstellar Dust in the Solar System [J].
Mann, Ingrid .
ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS, VOL 48, 2010, 48 :173-203
[44]   Interstellar Dust in the Solar System [J].
Veerle J. Sterken ;
Andrew J. Westphal ;
Nicolas Altobelli ;
David Malaspina ;
Frank Postberg .
Space Science Reviews, 2019, 215
[45]   Influence of fast interstellar gas flow on the dynamics of dust grains [J].
Pastor, P. .
CELESTIAL MECHANICS & DYNAMICAL ASTRONOMY, 2012, 112 (01) :23-45
[46]   Dust Detection by the Wave Instrument on STEREO: Nanoparticles Picked up by the Solar Wind? [J].
N. Meyer-Vernet ;
M. Maksimovic ;
A. Czechowski ;
I. Mann ;
I. Zouganelis ;
K. Goetz ;
M. L. Kaiser ;
O. C. St. Cyr ;
J.-L. Bougeret ;
S. D. Bale .
Solar Physics, 2009, 256 :463-474
[47]   CHARGING OF DUST GRAINS IN ASTROPHYSICAL ENVIRONMENTS BY SECONDARY ELECTRON EMISSIONS [J].
Abbas, M. M. ;
Tankosic, D. ;
LeClair, A. C. ;
Spann, J. F. .
ASTROPHYSICAL JOURNAL, 2012, 756 (01)
[48]   Interaction of the solar wind and stream particles, results from the Cassini dust detector [J].
Hsu, Hsiang-Wen ;
Kempf, Sascha ;
Postberg, Frank ;
Srama, Ralf ;
Jackman, Caitriona M. ;
Moragas-Klostermeyer, Georg ;
Helfert, Stefan ;
Gruen, Eberhard .
TWELFTH INTERNATIONAL SOLAR WIND CONFERENCE, 2010, 1216 :510-+
[49]   Dust grains around Jupiter -: The observations of the Galileo dust detector [J].
Thiessenhusen, KU ;
Krüger, H ;
Spahn, F ;
Grün, E .
ICARUS, 2000, 144 (01) :89-98
[50]   Effect of Dust Size Distribution on Ion-Acoustic Solitons in Dusty Plasmas with Different Dust Grains [J].
Gao, Dong-Ning ;
Yang, Yang ;
Yan, Qiang ;
Wang, Xiao-Yun ;
Duan, Wen-Shan .
PLASMA PHYSICS REPORTS, 2017, 43 (02) :212-217