arXiv · 1304.5481
Re-determining the Galactic spiral density wave parameters from data on masers with trigonometric parallaxes
Abstract
The parameters of the Galactic spiral wave are re-determined using a modified periodogram (spectral) analysis of the galactocentric radial velocities of 58 masers with known trigonometric parallaxes, proper motions, and line-of-site velocities. The masers span a wide range of galactocentric distances, $3<$R$<14$ kpc, which, combined with a large scatter of position angles $θ$ of these objects in the Galactic plane XY, required an accurate account of logarithmic dependence of spiral-wave perturbations on both galactocentric distance and position angle. A periodic signal was detected corresponding to the spiral density wave with the wavelength $λ=2.4 \pm 0.4$ kpc, peak velocity of wave perturbations $f_R=7.5 \pm 1.5$ km s$^{-1}$, the phase of the Sun in the density wave $χ_\odot=-160 \pm 15^\circ$, and the pitch angle of $-5.5 \pm 1^\circ$.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
A. T. Bajkova, V. V. Bobylev. 2013-04-19. Re-determining the Galactic spiral density wave parameters from data on masers with trigonometric parallaxes. https://doi.org/10.1002/asna.201311940
Cite the original work for its findings. Save a collection to share your selection of sources.