Area of research
Astronomy and Astrophysics · Instrumentation
Research interest
Research interests include Physics, Astrophysics, Astronomy, Planet, Astrobiology, and Protoplanetary disk.
MINDS: The very low-mass star and brown dwarf sample. Detections and trends in the inner disk gas
MINDS. JWST-MIRI reveals a peculiar CO<sub>2</sub>-rich chemistry in the drift-dominated disk CX Tau
MINDS: The JWST MIRI Mid-INfrared Disk Survey
Abundant hydrocarbons in the disk around a very-low-mass star
MINDS. JWST/MIRI Reveals a Dynamic Gas-rich Inner Disk inside the Cavity of SY Cha
MINDS. Hydrocarbons detected by JWST/MIRI in the inner disk of Sz28 consistent with a high C/O gas-phase chemistry
Dust mineralogy and variability of the inner PDS 70 disk
MINDS: Mid-infrared atomic and molecular hydrogen lines in the inner disk around a low-mass star
The Mid-infrared Instrument for JWST and Its In-flight Performance
A rich hydrocarbon chemistry and high C to O ratio in the inner disk around a very low-mass star
MINDS. The Detection of <sup>13</sup>CO<sub>2</sub> with JWST-MIRI Indicates Abundant CO<sub>2</sub> in a Protoplanetary Disk
Water in the terrestrial planet-forming zone of the PDS 70 disk
The diverse chemistry of protoplanetary disks as revealed by JWST
JWST MIRI/MRS in-flight absolute flux calibration and tailored fringe correction for unresolved sources
The chemical inventory of the inner regions of planet-forming disks – the JWST/MINDS program
JWST MIRI Flight Performance: Detector Effects and Data Reduction Algorithms
Observations of the planetary nebula SMP LMC 058 with the JWST MIRI medium resolution spectrometer
Nuclear high-ionisation outflow in the Compton-thick AGN NGC 6552 as seen by the JWST mid-infrared instrument