WR 137 (HD 192641) is a binary system consisting of a carbon-rich Wolf–Rayet (W-R) star and an Oe companion star in a 13 yr orbit. Near periastron, the winds of the two stars collide and form carbonaceous dust. We obtained three mid-infrared grism spectra of the system with SOFIA and FORCAST during the last year of SOFIA’s operations in 2021 July, 2021 February, and 2022 May (Cycle 9). Within these spectra, we have identified several wind lines from He i , He ii , C iii , and C iv that are emitted from the W-R wind as well as a weak emission feature around 6.3–6.4 μ m that may have shifted its peak flux from 6.29 to 6.41 μ m through this time period. The weak feature grew as the continuum dust emission grew while the W-R emission appeared t...
This paper presents the results of the analysis of the very first dedicated X-ray observation with X...
A long-term infrared and X-ray investigation of the colliding-wind binary WR 125 (WC7+O9III) has bee...
Some hot, massive, Population I Wolf-Rayet (W-R) stars of the carbon subclass are known to be prolif...
Abstract: We present results from a spectroscopic search for massive companions to dust-making Galac...
We present observations of WR 19 showing an infrared excess due to newly created dust similar to an ...
We present the results of an optical spectroscopic study of the massive Wolf-Rayet binary WR137. The...
We present observations of WR 19 showing an infrared excess due to newly created dust similar to an ...
For decades, a subset of carbon-rich WR (WC) stars have been known to actively form dust despite the...
peer reviewedWe present infrared photometry of the episodic dust-making Wolf-Rayet system WR19 (LS3)...
We present Spitzer/InfraRed Array Camera observations of dust formation from six extragalactic carbo...
Wolf-Rayet (WR) 140 is the archetypal periodic dust-forming colliding-wind binary that hosts a carbo...
We present analyses of new optical spectra of three WC9 stars, WR 88, WR 92 and WR 103 to test the s...
For decades, a subset of carbon-rich WR (WC) stars have been known to actively form dust despite the...
peer reviewedWe have carried out a long-term infrared and X-ray investigation of the colliding-wind ...
The massive, luminous Population I Wolf-Rayet stars can be considered as stars with the highest know...
This paper presents the results of the analysis of the very first dedicated X-ray observation with X...
A long-term infrared and X-ray investigation of the colliding-wind binary WR 125 (WC7+O9III) has bee...
Some hot, massive, Population I Wolf-Rayet (W-R) stars of the carbon subclass are known to be prolif...
Abstract: We present results from a spectroscopic search for massive companions to dust-making Galac...
We present observations of WR 19 showing an infrared excess due to newly created dust similar to an ...
We present the results of an optical spectroscopic study of the massive Wolf-Rayet binary WR137. The...
We present observations of WR 19 showing an infrared excess due to newly created dust similar to an ...
For decades, a subset of carbon-rich WR (WC) stars have been known to actively form dust despite the...
peer reviewedWe present infrared photometry of the episodic dust-making Wolf-Rayet system WR19 (LS3)...
We present Spitzer/InfraRed Array Camera observations of dust formation from six extragalactic carbo...
Wolf-Rayet (WR) 140 is the archetypal periodic dust-forming colliding-wind binary that hosts a carbo...
We present analyses of new optical spectra of three WC9 stars, WR 88, WR 92 and WR 103 to test the s...
For decades, a subset of carbon-rich WR (WC) stars have been known to actively form dust despite the...
peer reviewedWe have carried out a long-term infrared and X-ray investigation of the colliding-wind ...
The massive, luminous Population I Wolf-Rayet stars can be considered as stars with the highest know...
This paper presents the results of the analysis of the very first dedicated X-ray observation with X...
A long-term infrared and X-ray investigation of the colliding-wind binary WR 125 (WC7+O9III) has bee...
Some hot, massive, Population I Wolf-Rayet (W-R) stars of the carbon subclass are known to be prolif...