Research
My research focuses on compact objects, including neutron stars, white dwarfs, and black holes. I specialize in computational fluid dynamics (CFD) to model astrophysical systems such as the common envelope phase, AGN feedback, and Type Ia supernovae. Additionally, I use magnetohydrodynamic (MHD) simulations to study binary mergers, incorporating gravitational, plasma, and nuclear physics to better understand these extreme environments.
Feel free to reach out if you have questions about my research!
My research focuses on compact objects, including neutron stars, white dwarfs, and black holes. I specialize in computational fluid dynamics (CFD) to model astrophysical systems such as the common envelope phase, AGN feedback, and Type Ia supernovae. Additionally, I use magnetohydrodynamic (MHD) simulations to study binary mergers, incorporating gravitational, plasma, and nuclear physics to better understand these extreme environments.
Feel free to reach out if you have questions about my research!
Education
M.S Scientific Computing | New York University
B.S Engineering Physics | University of Illinois at Urbana-Champaign
M.S Scientific Computing | New York University
B.S Engineering Physics | University of Illinois at Urbana-Champaign