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Detection of continuum emission and atomic hydrogen from comet C/2020 F3 NEOWISE using GMRT

  • Sabyasachi Pal,
  • Arijit Manna

摘要

Comets are the most primordial objects in our solar system. Comets are icy bodies that release gas and dust when moving close to the Sun. The C/2020 F3 (Near-Earth Object Wide-field Infrared Survey Explorer: NEOWISE) is a nearly isotropic comet moving near-parabolic orbit. The C/2020 F3 (NEOWISE) was the brightest comet in the northern hemisphere after comet Hale–Bopp in 1997 and comet McNaught in 2006. This paper presents the first interferometric high-resolution detection of the comet C/2020 F3 (NEOWISE) using the Giant Metrewave Radio Telescope (GMRT). We detected the radio continuum emission from the comet C/2020 F3 (NEOWISE) with a flux density level 2.84 (±0.56)–3.89 (±0.57) mJy in the frequency range of 1050–1450 MHz. We also detected the absorption line of atomic hydrogen (HI) with a signal-to-noise ratio (SNR) \(\sim \) 5.7. The column density of the detected HI absorption line is \(N_{\textrm{HI}} = (3.46\pm 0.60)\times (T_{s}/100)\times 10^{21}\,\hbox {cm}^{-2}\) N HI = ( 3.46 ± 0.60 ) × ( T s / 100 ) × 10 21 cm - 2 , where we assume the spin temperature \(T_{s} = 100\) T s = 100 K and filling factor \(f = 1\) f = 1 . The significant detection of continuum emission from the comet C/2020 F3 (NEOWISE) at \(\sim \) 21 cm wavelength indicated that it arose from the large icy grains halo (IGH) region.