High-precision analysis of ground- and space-based observations across optical, X-ray, and multi-wavelength astronomy.
Numerical studies of accretion disks and tori around black holes, including relativistic effects, instabilities, and energy transport processes.
Research on high-energy particles of astrophysical origin, exploring cosmic rays, neutrinos, and their interactions using simulations and observational data.
Large-scale computational modeling of astrophysical systems using advanced simulation codes, focusing on MHD.
Analysis of X-ray and gamma-ray data from space observatories such as Chandra, Swift, and related missions.
Statistical analysis, spectral fitting, and time-series studies of astronomical data, combined with theoretical modeling to interpret physical processes.
Used for numerical simulations of astrophysical fluid and magnetohydrodynamic processes, including black hole accretion and jet dynamics.
Performed analysis of Swift satellite data to study transient and high-energy astrophysical sources.
Conducted analysis of Chandra X-ray Observatory data to investigate high-resolution X-ray emission from energetic cosmic sources.
Utilized CORSIKA software to simulate extensive air showers produced by high-energy cosmic rays in the Earth’s atmosphere.
Astrophysics researcher working on black hole accretion processes, with research interests that also extend to particle physics.
High-energy astrophysics researcher working on energetic cosmic sources, radiation processes, and extreme astrophysical environments.
Astroparticle physics researcher focusing on the study of cosmic rays, neutrinos, and the connection between particle physics and astrophysical phenomena.
Kathmandu. 14/05 kalanki City
9840435171