During the REWARD project, my activities can be grouped into two main categories: exploiting X-ray polarisation observations to improve the current concept to model accreting black holes, and strengthening scientific collaborations and community interaction.
The first category focused on exploiting the potential of X-ray polarimetry to probe the geometry of accreting black holes. At the beginning of the fellowship, I joined the IXPE collaboration and gained the expertise required to carry out polarimetric analyses. This enabled me to contribute to several landmark studies reporting the first detections of X-ray polarisation in transient black hole binaries. These results opened a new observational window on the inner accretion flow and its connection to jet launching. Because black hole binaries are transient sources, it is essential to capture them during outbursts, when their polarisation properties evolve across accretion states. Within REWARD, I contributed to several observational campaigns, including GX 339-4, for which I successfully obtained IXPE observing time, and Swift J1727.8-1613 one of the brightest black hole binaries ever detected, which was observed across all accretion states of its outburst. Finally, I consolidated my long-term role in this area by joining the working group on strong gravity for the upcoming eXTP mission, ensuring continued involvement in next-generation X-ray polarisation studies.
The second category of work centred on expanding collaborations and strengthening ties within the high-energy astrophysics community. Within the BlackSTAR network, I contributed to investigations of the spectral and timing properties of black hole binaries, clarifying the interplay between different emission components. I was also part of a new Italian-led collaboration that obtained IXPE telescope time on GX 339-4, and I actively participated in the collaboration for the first analysis of black hole binaries using JWST data. These results mark a significant step in probing infrared emission and variability with next-generation instrumentation. The project also enabled me to carry out several research visits, including work at Universitat Autònoma de Barcelona (Spain) on the polarisation analysis of GX 339-4, at the Brera Observatory in Merate (Italy) on optical polarisation studies, and at the Institut de Planétologie et d’Astrophysique in Grenoble (France) on the spectral-polarimetric analysis of Swift J1727.8-1613.
Supervision and mentoring were also an integral part of the fellowship. At the University of Milan, I supervised undergraduate theses on X-ray and optical variability of accreting black holes, both of which produced novel results that will contribute to future publications. In addition, I mentored students through the Google Summer of Code programme, guiding them in the development of open-source astrophysical software. These activities not only advanced specific research objectives but also contributed to training the next generation of scientists and reinforced my own expertise in collaborative and open-source practices.