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R. P. Santos

Publications and source records attributed to R. P. Santos.

2 recordsLinked to original sources

The transitional Type Ibn/IIn SN 2022pda, with pre-explosion outbursts and a double-peaked light curve

We report the results of a photometric and spectroscopic follow-up campaign of the unusual interacting supernova (SN) 2022pda. Precursor variability lasting $\sim 100$ days is observed before the explosion. The SN light curve has a double peak shape. It reached a first maximum of $M_{\rm{r}} = -19.6 \pm 0.2$\,mag, followed by an initial two-month decline and a second, broad peak lasting about six months. The early spectra show a blue continuum with dominant H and He emission lines. A high-resolution pre-maximum spectrum shows that the profile of the \Hei~$λ$5876 line consists of a moderately narrow ($\sim 1900$ \kms) P~Cygni absorption superposed on a broader ($\sim 3300$ \kms) component. In the blue region, several spectral features are identified, including C {\sc iii}/N {\sc iii}/O {\sc ii} blends. Two broad bumps at 4600--5200 Å, 6400--6800~Å regions reveal a complex profile, which are likely due to blends of H, He, and other emission lines. Late-time spectra are still dominated by prominent and broad H and He lines in emission. Shock-driven model fits to the bolometric light curve suggest that the SN is powered by interaction with a massive CSM with enhanced mass loss rates $\sim 5$ \msun yr$^{-1}$, expelled during two events occurred $\sim 1$ and $\sim 0.2$ years before the explosion. The overall SN evolution indicates that SN\,2022pda is a transitional event between a H-rich SN IIn (SN\,2009ip-like) and a He-rich SN Ibn. Our findings suggest that the progenitor was likely a Luminous Blue Variable transitioning towards a Wolf--Rayet stage.

astro-ph.HE

Towards an Incident Management Framework in Proprietary Software Ecosystems

In the evolving landscape of Software Engineering, the paradigm of software ecosystems has emerged, giving rise to proprietary software ecosystems (PSECO), with their central organizations known as keystones. PSECO is characterized by the contribution of various technologies produced as private and protected by intellectual property and confidentiality agreements, centered on common technological platforms. Sustaining these PSECO technological platforms is vital, as any incident can have substantial repercussions. This work introduces a framework for incident management to support the organizations' management teams in the PSECO context, called IM Framework. The IM Framework was developed in close collaboration with practitioners across a large international organization. We grounded the IM Framework based on the results of a rapid review study that retrieved 293 studies, of which 23 were selected after applying review procedures. This framework comprises five core categories: organizational goals, practices, success factors, associated benefits, and prevalent barriers. The IM Framework offers practical guidance for the PSECO management team, focusing on real-world applications to enhance reliability and resilience in a complex and dynamic software environment. Our study also promises to fill the gap in incident management governance by supporting the PSECO organization's management team and maintaining robust technological platforms amidst evolving business demands and market pressures.

cs.SE