Chasing the storm: Investigating the application of high-contrast imaging techniques in producing precise exoplanet light curves
arXiv:2511.01384 · doi:10.1093/mnras/staf1909
Abstract
Substellar companions such as exoplanets and brown dwarfs exhibit changes in brightness arising from top-of-atmosphere inhomogeneities, providing insights into their atmospheric structure and dynamics. This variability can be measured in the light curves of high-contrast companions from the ground by combining differential spectrophotometric monitoring techniques with high-contrast imaging. However, ground-based observations are sensitive to the effects of turbulence in Earth's atmosphere, and while adaptive optics (AO) systems and bespoke data processing techniques help to mitigate these, residual systematics can limit photometric precision. Here, we inject artificial companions to data obtained with an AO system and a vector Apodizing Phase Plate coronagraph to test the level to which telluric and other systematics contaminate such light curves, and thus how well their known variability signals can be recovered. We find that varying companions are distinguishable from non-varying companions, but that variability amplitudes and periods cannot be accurately recovered when observations cover only a small number of periods. Residual systematics remain above the photon noise in the light curves but have not yet reached a noise floor. We also simulate observations to assess how specific systematic sources, such as non-common path aberrations and AO residuals, can impact aperture photometry as a companion moves through pupil-stabilised data. We show that only the lowest-order aberrations are likely to affect flux measurements, but that thermal background noise is the dominant source of scatter in raw companion photometry. Predictive control and focal-plane wavefront sensing techniques will help to further reduce systematics in data of this type.
19 pages, 12 figures, accepted for publication in MNRAS
References in corpus (37)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- The effect of red noise on planetary transit detection
- Strong Brightness Variations Signal Cloudy-to-Clear Transition of Brown Dwarfs
- Temporal Evolution of Coronagraphic Dynamic Range, and Constraints on Companions to Vega
- Calibration and Pre-Compensation of Non-Common Path Aberrations for extreme Adaptive Optics
- Let the Great World Spin: Revealing the Stormy, Turbulent Nature of Young Giant Exoplanet Analogs with the Spitzer Space Telescope
- The Brown dwarf Atmosphere Monitoring (BAM) Project I: The largest near-IR monitoring survey of L- & T-dwarfs
- Patchy Forsterite Clouds in the Atmospheres of Two Highly Variable Exoplanet Analogs
- Strong Near-Infrared Spectral Variability of the Young Cloudy L Dwarf Companion VHS J1256-1257 b
- On-sky performance analysis of the vector Apodizing Phase Plate coronagraph on MagAO/Clio2
- Performance characterization of a broadband vector Apodizing Phase Plate coronagraph
- The JWST Weather Report from the Nearest Brown Dwarfs I: multi-period JWST NIRSpec + MIRI monitoring of the benchmark binary brown dwarf WISE 1049AB
- Roaring Storms in the Planetary-Mass Companion VHS 1256-1257 b: Hubble Space Telescope Multi-epoch Monitoring Reveals Vigorous Evolution in an Ultra-cool Atmosphere
- Cloud Atlas: Rotational Spectral Modulations and potential Sulfide Clouds in the Planetary-mass, Late T-type Companion Ross 458C
- A High-Contrast Search for Variability in HR 8799bc with VLT-SPHERE
- Cloud Atlas: Weak color modulations due to rotation in the planetary-mass companion GU Psc b and 11 other brown dwarfs
- Ground-based Optical Transmission Spectroscopy of the Nearby Terrestrial Exoplanet LTT 1445Ab
- Atmospheric Monitoring and Precise Spectroscopy of the HR 8799 Planets with SCExAO/CHARIS
- On-sky verification of Fast and Furious focal-plane wavefront sensing: Moving forward toward controlling the island effect at Subaru/SCExAO
- Patterned liquid-crystal optics for broadband coronagraphy and wavefront sensing
- A search for photometric variability in the young T3.5 planetary-mass companion GU Psc b
- A new method to measure the spectra of transiting exoplanet atmospheres using multi-object spectroscopy
- A Near-infrared Variability Survey of Young Planetary-mass Objects
- High contrast imaging at the LBT: the LEECH exoplanet imaging survey
- Calibration of quasi-static aberrations in exoplanet direct-imaging instruments with a Zernike phase-mask sensor. IV. Temporal stability of non-common path aberrations in VLT/SPHERE
- Measuring the variability of directly imaged exoplanets using vector Apodizing Phase Plates combined with ground-based differential spectrophotometry
- Revealing the Vertical Cloud Structure of a young low-mass Brown Dwarf, an analog to the beta-Pictoris b directly-imaged exoplanet, through Keck I/MOSFIRE spectro-photometric variability
- High-contrast observations of brown dwarf companion HR 2562 B with the vector Apodizing Phase Plate coronagraph
- The photometric periods of rapidly rotating field ultra-cool dwarfs
- Exploring the directly imaged HD 1160 system through spectroscopic characterization and high-cadence variability monitoring
- High-Contrast Coronagraphy
- Applying a temporal systematics model to vector Apodizing Phase Plate coronagraphic data: TRAP4vAPP
- High Spatial Resolution Thermal-Infrared Spectroscopy with ALES: Resolved Spectra of the Benchmark Brown Dwarf Binary HD 130948BC
- Improved companion mass limits for Sirius A with thermal infrared coronagraphy using a vector-apodizing phase plate and time-domain starlight-subtraction techniques
- Protoplanetary disk insights from the first ERIS/APP survey at 4 μm
- On-sky low order non-common path correction of the GPI Calibration Unit