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相关论文: G306.3-0.9: A newly discovered young galactic supe…

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Our 50 ks Chandra observation of the small radio supernova remnant (SNR) G1.9+0.3 shows a complete shell structure with strong bilateral symmetry, about $100''$ in diameter. The radio morphology is also shell-like, but only about $84''$ in…

天体物理学 · 物理学 2009-11-13 S. P. Reynolds , K. J. Borkowski , D. A. Green , U. Hwang , I. Harrus , R. Petre

Recent radio observations of the small Galactic supernova remnant G1.9+0.3 made at 4.86 GHz with the VLA are presented, and compared with earlier observations at 1.49 GHz which have a comparable resolution (10 x 4 arcsec^2). These show that…

天体物理学 · 物理学 2008-05-20 D. A. Green , S. P. Reynolds , K. J. Borkowski , U. Hwang , I. Harrus , R. Petre

We present an analysis of a new Australia Telescope Compact Array (ATCA) radio-continuum observation of supernova remnant (SNR) G1.9+0.3, which at an age of $\sim$181$\pm$25 years is the youngest known in the Galaxy. We analysed all…

We present radio-continuum observations of the Galactic supernova remnant (SNR) candidate, G308.3-1.4, made with the Australia Telescope Compact Array, Molonglo Observatory Synthesis Telescope and the Parkes radio telescope. Our results…

The radio source G1.9+0.3 has recently been identified as the youngest known Galactic supernova remnant, with a putative age of ~100 years. We present a radio light curve for G1.9+0.3 based on 25 epochs of observation with the Molonglo…

天体物理学 · 物理学 2009-11-13 T. Murphy , B. M. Gaensler , S. Chatterjee

We discovered a middle-aged supernova remnant (SNR) in the vicinity of G69.7+1.0 using the ASCA satellite. G69.7+1.0 was identified in the 2.7 GHz survey and classified as a shell-type SNR with a diameter of 16 arcmin. During the ROSAT…

天体物理学 · 物理学 2015-06-24 Kumi Yoshita , Emi Miyata , Hiroshi Tsunemi

The radio evolution of, so far the youngest known, Galactic supernova remnant (SNR) G1.9+0.3 is investigated by using three-dimensional (3D) hydrodynamic modelling and non-linear kinetic theory of cosmic ray (CR) acceleration in SNRs. We…

高能天体物理现象 · 物理学 2017-04-05 M. Z. Pavlović

The properties of the - presumably - youngest Galactic supernova remnant (SNR) G1.9+0.3 are investigated within the framework of nonlinear kinetic theory of cosmic ray acceleration in SNRs. The observed angular size and expansion speed as…

高能天体物理现象 · 物理学 2011-03-07 L. T. Ksenofontov , H. J. Voelk , E. G. Berezhko

We present compelling evidence for confirmation of a Galactic supernova remnant (SNR) candidate, G332.5-5.6, based initially on identification of new, filamentary, optical emission line nebulosity seen in the arcsecond resolution images…

天体物理学 · 物理学 2009-11-13 M. Stupar , Q. A. Parker , M. D. Filipovic , D. J. Frew , I. Bojicic , B. Aschenbach

We identify the radio-emitting shell-type supernova remnant G15.9+0.2 as a relatively young remnant containing an X-ray point source that may be its associated neutron star. The integrated spectrum of the remnant shell obtained from our 30…

天体物理学 · 物理学 2009-11-11 S. P. Reynolds , K. J. Borkowski , U. Hwang , I. Harrus , R. Petre , G. Dubner

Aims: We present a detailed X-ray and radio wavelength study of G308.4-1.4, a candidate supernova remnant (SNR) in the ROSAT All Sky Survey and the MOST supernova remnant catalogue, in order to identify it as a SNR. Methods: The SNR…

高能天体物理现象 · 物理学 2015-06-04 Tobias Prinz , Werner Becker

A new extended gamma-ray source, which was named as Source A, in the southwest of Galactic supernova remnant (SNR) G306.3$-$0.9 was detected with a significance of $\sim$13$\sigma$ at the location of R.A. (J2000) = 13$^{\rm{h}}$…

高能天体物理现象 · 物理学 2017-12-19 Tulun Ergin , Satoru Katsuda , Aytap Sezer , Ryo Yamazaki , Miroslav Filipovic , Hidetoshi Sano , Yasuo Fukui , Shuta Tanaka

We present radio observations of the source G332.5-5.6, a candidate supernova remnant (SNR). Observations have been performed with the Australia Telescope Compact Array (ATCA) at two frequencies, at 1.4 and 2.4 GHz. Our results confirm that…

天体物理学 · 物理学 2008-11-26 E. M. Reynoso , A. J. Green

The discovery of the youngest Galactic supernova remnant (SNR) G1.9+0.3 has allowed a look at a stage of SNR evolution never before observed. We analyze the 50 ks Chandra observation with particular regard to spectral variations. The very…

星系天体物理 · 物理学 2009-11-13 S. P. Reynolds , K. J. Borkowski , D. A. Green , U. Hwang , I. Harrus , R. Petre

We present the first detailed study on the Galactic supernova remnant (SNR) G46.8-0.3 and its environment since its discovery more than 50 years ago. With new flux measurements from radio surveys plus a compilation from the literature we…

高能天体物理现象 · 物理学 2022-08-17 L. Supan , G. Fischetto , G. Castelletti

We report measurements of X-ray expansion of the youngest Galactic supernova remnant, G1.9+0.3, using Chandra observations in 2007, 2009, and 2011. The measured rates strongly deviate from uniform expansion, decreasing radially by about 60%…

高能天体物理现象 · 物理学 2015-06-19 K. J. Borkowski , S. P. Reynolds , D. A. Green , U. Hwang , R. Petre , K. Krishnamurthy , R. Willett

We present Australia Telescope Compact Array observations of the supernova remnant (SNR) G309.2-00.6. In a 1.3-GHz continuum image the remnant appears as a near-circular shell, but with two brightened and distorted arcs of emission on…

天体物理学 · 物理学 2009-10-30 B. M. Gaensler , A. J. Green , R. N. Manchester

Supernova remnant (SNR) detection along the Galactic plane poses a number of challenges. The SNR G309.8+00.0 lies exactly on the Galactic plane, with its center coinciding with galactic latitude (b)=0 deg. In this paper we report the first…

高能天体物理现象 · 物理学 2024-10-01 Miltiadis Michailidis , Gerd Pühlhofer , Andrea Santangelo , Manami Sasaki , Werner Becker

We report on observations of the Galactic supernova remnant (SNR) G299.2$-$2.9 with the {\it Chandra X-Ray Observatory}. The high resolution images with {\it Chandra} resolve the X-ray-bright knots, shell, and diffuse emission extending…

天体物理学 · 物理学 2009-06-23 Sangwook Park , Patrick O. Slane , John P. Hughes , Koji Mori , David N. Burrows , Gordon P. Garmire
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