Area of research
Astronomy and Astrophysics · Instrumentation
Research interest
Research interests include Physics, Astrophysics, Quasar, Astronomy, Galaxy, and Redshift.
First Results from the JWST Early Release Science Program Q3D: Powerful Quasar-driven Galactic Scale Outflow at z = 3
First Results from the JWST Early Release Science Program Q3D: The Warm Ionized Gas Outflow in z ∼ 1.6 Quasar XID 2028 and Its Impact on the Host Galaxy
First Results from the JWST Early Release Science Program Q3D: Ionization Cone, Clumpy Star Formation, and Shocks in a z = 3 Extremely Red Quasar Host
First Results from the JWST Early Release Science Program Q3D: Turbulent Times in the Life of a z ∼ 3 Extremely Red Quasar Revealed by NIRSpec IFU
<i>Hubble Space Telescope</i>[O <scp>iii</scp>] emission-line kinematics in two nearby QSO2s: a case for X-ray feedback
<i>Hubble Space Telescope</i> observations of [O <scp>iii</scp>] emission in nearby QSO2s: physical properties of the ionized outflows
HST and ground-based spectroscopy of quasar outflows: from mini-BALs to BALs
The Sloan Digital Sky Survey Quasar Catalog: Twelfth data release
Discovery of extreme [O iii] λ5007 Å outflows in high-redshift red quasars
Extremely red quasars in BOSS
XQ-100: A legacy survey of one hundred 3.5 ≲<i>z</i>≲ 4.5 quasars observed with VLT/X-shooter
Nature and statistical properties of quasar associated absorption systems in the XQ-100 Legacy Survey
The Sloan Digital Sky Survey quasar catalog: tenth data release
Morphologies of z ∼ 0.7 AGN host galaxies in CANDELS: no trend of merger incidence with AGN luminosity
Candidate type II quasars at 2 < z < 4.3 in the Sloan Digital Sky Survey III
Extreme-velocity quasar outflows and the role of X-ray shielding
DISCOVERY OF THE TRANSITION OF A MINI-BROAD ABSORPTION LINE INTO A BROAD ABSORPTION LINE IN THE SDSS QUASAR J115122.14+020426.3
The physics and physical conditions of quasar outflows
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