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Md Tanveer Karim

Publications and source records attributed to Md Tanveer Karim.

2 recordsLinked to original sources

Probing the Southern Fermi Bubble in Ultraviolet Absorption using Distant AGNs

The Fermi Bubbles are two giant gamma-ray emitting lobes extending 55$^{\circ}$ above and below the Galactic Center. While the Northern Bubble has been extensively studied in ultraviolet (UV) absorption, little is known about the gas kinematics of the southern Bubble. We use UV absorption-line spectra from the Cosmic Origins Spectrograph (COS) on the Hubble Space Telescope to probe the southern Fermi Bubble using a sample of 17 background AGN projected behind or near the Bubble. We measure the incidence of high-velocity clouds (HVC), finding that four out of six sightlines passing through the Bubble show HVC absorption, versus six out of eleven passing outside. We find strong evidence that the maximum absolute LSR velocity of the HVC components decreases as a function of galactic latitude within the Bubble, for both blueshifted and redshifted components, as expected for a decelerating outflow. We explore whether the column-density ratios SiIV/SiIII, SiIV/SiII and SiIII/SiII correlate with the absolute galactic latitude within the Bubble. These results demonstrate the use of UV absorption-line spectroscopy to characterize the kinematics and ionization conditions of embedded clouds in the Galactic Center outflow.

astro-ph.GA↗

Revised Geometric Estimates of the North Galactic Pole and the Sun's Height Above the Galactic Midplane

Astronomers are entering an era of μas-level astrometry utilizing the 5-decade-old IAU Galactic coordinate system that was only originally defined to $\sim$0°.1 accuracy, and where the dynamical centre of the Galaxy (Sgr A*) is located $\sim$0°.07 from the origin. We calculate new independent estimates of the North Galactic Pole (NGP) using recent catalogues of Galactic disc tracer objects such as embedded and open clusters, infrared bubbles, dark clouds, and young massive stars. Using these catalogues, we provide two new estimates of the NGP. Solution 1 is an "unconstrained" NGP determined by the galactic tracer sources, which does not take into account the location of Sgr A*, and which lies 90°.120$\,\pm\,$0°.029 from Sgr A*, and Solution 2 is a "constrained" NGP which lies exactly 90° from Sgr A*. The "unconstrained" NGP has ICRS position: $α_{NGP}$ = 192°.729 $\,\pm\,$ 0°.035, $δ_{NGP}$ = 27°.084 $\,\pm\,$ 0°.023 and $θ\,$ = 122°.928 $\,\pm\,$ 0°.016. The "constrained" NGP which lies exactly 90° away from Sgr A* has ICRS position: $α_{NGP}$ = 192°.728 $\,\pm\,$0°.010, $δ_{NGP}$ = 26°.863 $\,\pm\,$ 0°.019 and $θ\,$ = 122°.928 $\,\pm\,$ 0°.016. The difference between the solutions is likely due to the Sun lying above the Galactic midplane. Considering the angular separation between Sgr A* and our unconstrained NGP, and if one adopts the recent estimate of the Galactocentric distance for the Sun of $R_{0}$ = 8.2$\,\pm\,$0.1 kpc, then we estimate that the Sun lies $z_{\odot}$ $\simeq$ 17$\,\pm\,$5 pc above the Galactic midplane. Our value of $z_{\odot}$ is consistent with the true median of 55 previous estimates published over the past century of the Sun's height above the Galactic mid-plane ($z_{\odot}$ $\simeq$ 17$\,\pm\,$2 pc).

astro-ph.SR↗