Area of research
Astronomy and Astrophysics · Nuclear and High Energy Physics
Research interest
Research interests include Astrophysics and Cosmic Phenomena, Astrophysical Phenomena and Observations, Pulsars and Gravitational Waves Research, and Gamma-ray bursts and supernovae.
Modeling the inner part of the jet in M87: Confronting jet morphology with theory
Precessing jet nozzle connecting to a spinning black hole in M87
Filamentary structures as the origin of blazar jet radio variability
Stringent axion constraints with Event Horizon Telescope polarimetric measurements of M87⋆
Resolving the Inner Parsec of the Blazar J1924–2914 with the Event Horizon Telescope
A Universal Power-law Prescription for Variability from Synthetic Images of Black Hole Accretion Flows
Collimation of the Relativistic Jet in the Quasar 3C 273
Unraveling the Innermost Jet Structure of OJ 287 with the First GMVA + ALMA Observations
Birefringence tomography for axion cloud
Constraints on black-hole charges with the 2017 EHT observations of M87*
Flares in the Galactic Centre – I. Orbiting flux tubes in magnetically arrested black hole accretion discs
State-of-the-art energetic and morphological modelling of the launching site of the M87 jet
How to tell an accreting boson star from a black hole
Plasmoid formation in global GRMHD simulations and AGN flares
Verification of Radiative Transfer Schemes for the EHT
The Event Horizon General Relativistic Magnetohydrodynamic Code Comparison Project
Microscopic Processes in Global Relativistic Jets Containing Helical Magnetic Fields: Dependence on Jet Radius
New method for shadow calculations: Application to parametrized axisymmetric black holes
Magnetic Field Amplification by Turbulence in A Relativistic Shock Propagating through An Inhomogeneous Medium
2016cited by 50position: first
Magnetic Dissipation in Relativistic Jets
RECOLLIMATION SHOCKS IN MAGNETIZED RELATIVISTIC JETS
Magnetic field amplification and saturation in turbulence behind a relativistic shock
SPATIAL GROWTH OF THE CURRENT-DRIVEN INSTABILITY IN RELATIVISTIC JETS
MAGNETIC FIELD GENERATION IN CORE-SHEATH JETS VIA THE KINETIC KELVIN-HELMHOLTZ INSTABILITY
CURRENT DRIVEN KINK INSTABILITY IN A MAGNETICALLY DOMINATED ROTATING RELATIVISTIC JET
Magnetic field generation in a jet-sheath plasma via the kinetic Kelvin-Helmholtz instability
Radiation from accelerated particles in relativistic jets with shocks, shear-flow, and reconnection
Radiation from accelerated particles in relativistic jets with shocks, shear-flow, and reconnection
THREE-DIMENSIONAL RELATIVISTIC MAGNETOHYDRODYNAMIC SIMULATIONS OF CURRENT-DRIVEN INSTABILITY. III. ROTATING RELATIVISTIC JETS