A blind method to detrend instrumental systematics in exoplanetary light-curves
arXiv:1503.05309 · doi:10.1088/0004-637X/808/1/56
Abstract
The study of the atmospheres of transiting exoplanets requires a photometric precision, and repeatability, of one part in . This is beyond the original calibration plans of current observatories, hence the necessity to disentangle the instrumental systematics from the astrophysical signals in raw datasets. Most methods used in the literature are based on an approximate instrument model. The choice of parameters of the model and their functional forms can sometimes be subjective, causing controversies in the literature. Recently, Morello et al. (2014, 2015) have developed a non-parametric detrending method that gave coherent and repeatable results when applied to Spitzer/IRAC datasets that were debated in the literature. Said method is based on Independent Component Analysis (ICA) of individual pixel time-series, hereafter "pixel-ICA". The main purpose of this paper is to investigate the limits and advantages of pixel-ICA on a series of simulated datasets with different instrument properties, and a range of jitter timescales and shapes, non-stationarity, sudden change points, etc. The performances of pixel-ICA are compared against the ones of other methods, in particular polynomial centroid division (PCD), and pixel-level decorrelation (PLD) method (Deming et al. 2014). We find that in simulated cases pixel-ICA performs as well or better than other methods, and it also guarantees a higher degree of objectivity, because of its purely statistical foundation with no prior information on the instrument systematics. The results of this paper, together with previous analyses of Spitzer/IRAC datasets, suggest that photometric precision and repeatability of one part in can be achieved with current infrared space instruments.
accepted by ApJ
References in corpus (10)
- DHP Framework: Digital Health Passports Using Blockchain -- Use case on international tourism during the COVID-19 pandemic
- Possible thermochemical disequilibrium in the atmosphere of the exoplanet GJ 436b
- Spitzer Secondary Eclipses of the Dense, Modestly-irradiated, Giant Exoplanet HAT-P-20b Using Pixel-Level Decorrelation
- Transit timing effects due to an exomoon
- New Analysis Indicates No Thermal Inversion in the Atmosphere of HD 209458b
- A Sensitive Search for Variability in Late L Dwarfs: The Quest for Weather
- A Spitzer Search for Water in the Transiting Exoplanet HD189733b
- Revisiting Spitzer transit observations with Independent Component Analysis: new results for the GJ436 system
- The ground-based H, K, and L-band absolute emission spectra of HD 209458b
- A new look at Spitzer primary transit observations of the exoplanet HD189733b
Cited by in corpus (13)
- On Correlated-noise Analyses Applied To Exoplanet Light Curves
- Repeatability and Accuracy of Exoplanet Eclipse Depths Measured with Post-Cryogenic Spitzer
- A Search for Water in the Atmosphere of HAT-P-26b Using LDSS-3C
- An independent analysis of the Spitzer/IRAC phase curves of WASP43 b
- Introducing a New Spitzer Master BLISS Map to Remove the Instrument-Systematic -- Phase-Curve-Parameter Degeneracy, as Demonstrated by a Reanalysis of the 4.5 WASP-43b Phase Curve
- Near-IR transmission spectrum of HAT-P-32 b using HST/WFC3
- Repeatability of Spitzer/IRAC exoplanetary eclipses with Independent Component Analysis
- Hot Rocks Survey III: A deep eclipse for LHS 1140c and a new Gaussian process method to account for correlated noise in individual pixels
- Spitzer thermal phase curve of WASP-121 b
- A SEA BASS on the exoplanet HD209458b
- Pixel Level Decorrelation in Service of the \textit{Spitzer} Microlens Parallax Survey
- Is binning always sinning? The impact of time-averaging for exoplanet phase curves
- Multiple component decomposition from millimeter single-channel data