Preprint

·2018 OPEN ACCESS

Optical and X-ray observational search for the possible supernova remnant candidates in the nearby galaxy NGC 1569

E. N. Ercan , Ebru Aktekin , Nergis Cesur YTU , Ayşegül Tümer

Monthly Notices of the Royal Astronomical Society

Abstract

We report the results of our investigation on the possible existence of supernova remnants (SNRs) in the nearby galaxy, NGC 1569, using the CCD imaging and spectroscopic observations from the RTT150 telescope of TUG-TUBITAK in Antalya, Turkey for two different observing periods. Using [S\,{\sc ii}]/H$α$ $\geq$ 0.4 standard criteria, the identification of 13 new SNR candidates for this galaxy is proposed for two different epochs. We found the [S\,{\sc ii}]/H$α$ ratios ranging from 0.46--0.84 and H$α$ intensities ranging from (2.2--32) $\times$ 10$^{-15}$ erg cm$^{-2}$ s$^{-1}$. [S\,{\sc ii}]$λλ$6716/6731 average flux ratio is calculated from the optical spectra for only one possible SNR candidate. By using this ratio the electron density, $N_{\rm e}$, is estimated to be 121 $\pm$ 17 cm$^{-3}$ and by using the [O\,{\sc iii}]$λ$5007/H$β$ ratio of the same spectrum, the shock wave velocity, $V_{\rm s}$, is estimated to be between 100 < Vs < 150 km s$^{-1}$. Using {\it Chandra} data, we find that out of 13 SNR candidates only 10 of them have yielded a spectrum with good statistics, confirming the existence of 10 SNR candidates with matched positions in X-ray region as well. We measure the 0.5--2 keV band flux down to 0.58 $\times$ 10$^{-15}$ erg cm$^{-2}$ s$^{-1}$ for 10 X-ray sources. Our spectral analysis revealed that spectra of the SNR candidates are best modelled with the Collisional Ionisation Equilibrium plasma with a temperature range of 0.84 keV < \textit{kT$_{e}$} < 1.36 keV.

Keywords

Physics Astrophysics Galaxy Supernova remnant Lambda Supernova Flux (metallurgy) Spectral line Doubly ionized oxygen Telescope H-alpha Emission spectrum Astronomy Optics

Subject Areas

Astrophysics and Cosmic Phenomena ·Nuclear and High Energy Physics ·Physical Sciences
Gamma-ray bursts and supernovae ·Astronomy and Astrophysics ·Physical Sciences
Astronomical Observations and Instrumentation ·Computational Mechanics ·Physical Sciences