The Brighter-Fatter Effect in the JWST MIRI Si:As IBC detectors I. Observations, impact on science, and modelling
arXiv:2303.13517 · doi:10.1051/0004-6361/202346490
Abstract
The Mid-Infrared Instrument (MIRI) on board the James Webb Space Telescope (JWST) uses three Si:As impurity band conduction (IBC) detector arrays. The output voltage level of each MIRI detector pixel is digitally recorded by sampling-up-the-ramp. For uniform or low-contrast illumination, the pixel ramps become non-linear in a predictable way, but in areas of high contrast, the non-linearity curve becomes much more complex. The origin of the effect is poorly understood and currently not calibrated. We provide observational evidence of the Brighter-Fatter Effect (BFE) in MIRI conventional and high-contrast coronographic imaging, low-resolution spectroscopy, and medium-resolution spectroscopy data and investigate the physical mechanism that gives rise to the effect on the MIRI detector pixel raw voltage integration ramps. We use public data from the JWST MIRI commissioning and Cycle 1 phase. We also develop a numerical electrostatic model of the MIRI detectors using a modified version of the public Poisson_CCD code. We find that the physical mechanism behind the BFE manifesting in MIRI data is fundamentally different to that of CCDs and photodiode arrays such as the Hawaii-XRG (HXRG) near-infrared detectors used by the NIRISS, NIRCam, and NIRSpec instruments on board JWST. Observationally, the BFE makes the JWST MIRI data yield 10-25 % larger point sources and spectral line profiles as a function of the relative level of debiasing of neighboring detector pixels. This broadening impacts the MIRI absolute flux calibration, time-series observations of faint companions, and PSF modeling and subtraction. We also find that the intra-pixel 2D profile of the shrinking Si:As IBC detector depletion region directly impacts the accuracy of the pixel ramp non-linearity calibration model.
16 pages, 11 figures
References in corpus (12)
- NIRCam Performance on JWST In Flight
- JWST MIRI flight performance: The Medium-Resolution Spectrometer
- In-orbit Performance of the Near-Infrared Spectrograph NIRSpec on the James Webb Space Telescope
- Evidence for self-interaction of charge distribution in charge-coupled devices
- Spatially resolved imaging of the inner Fomalhaut disk using JWST/MIRI
- JWST MIRI/MRS in-flight absolute flux calibration and tailored fringe correction for unresolved sources
- The quantum efficiency and diffractive image artifacts of Si:As IBC mid-IR detector arrays at 5 10 m: Implications for the JWST/MIRI detectors
- Spectroscopic time series performance of the Mid-Infrared Instrument on the JWST
- JWST MIRI flight performance: Detector Effects and Data Reduction Algorithms
- The nature of point source fringes in mid-infrared spectra acquired with the James Webb Space Telescope
- Direct emission spectroscopy of exoplanets with the medium resolution imaging spectrometer on board JWST MIRI: I. Molecular mapping and sensitivity to instrumental effects
- MIRISim: A Simulator for the Mid-Infrared Instrument on JWST
Cited by in corpus (9)
- Sulphur dioxide in the mid-infrared transmission spectrum of WASP-39b
- JWST MIRI Flight Performance: Imaging
- Transiting exoplanets with the Mid-InfraRed Instrument on board the James Webb Space Telescope: From simulations to observations
- JWST-TST DREAMS: Non-Uniform Dayside Emission for WASP-17b from MIRI/LRS
- The JWST Rocky Worlds DDT Program reveals GJ 3929b to likely be a bare rock
- JWST/MIRI observations of the young TWA 27 system: hydrocarbon disk chemistry, silicate clouds, evidence for a CPD
- Extended source fringe flats for the JWST MIRI Medium Resolution Spectrometer
- Uniform Reanalysis of JWST MIRI 15μm Exoplanet Eclipse Observations using Frame-Normalized Principal Component Analysis
- Silicate Clouds, SiO, and Molecular Trends across the L-T Sequence: A JWST/MIRI LRS Spectral Library of Brown Dwarfs