On the Robustness of Phosphine Signatures in Venus' Clouds
arXiv:2012.05844 · doi:10.1038/s41550-021-01423-y
Abstract
We published spectra of phosphine molecules in Venus' clouds, following open-science principles in releasing data and scripts (with community input leading to ALMA re-processing, now benefiting multiple projects). Some misconceptions about de-trending of spectral baselines have also emerged, which we address here. Using the JCMT PH3-discovery data, we show that mathematically-correct polynomial fitting of periodic ripples does not lead to "fake lines" (probability < ~1%). We then show that the ripples can be characterised in a non-subjective manner via Fourier transforms. A 20 ppb PH3 feature is ~5σ compared to the JCMT baseline-uncertainty, and is distinctive as a narrow perturber of the periodic ripple pattern. The structure of the FT-derived baseline also shows that polynomial fitting, if unguided, can amplify artefacts and so artificially reduce significance of real lines.
Response to: Snellen I. et al. Astron. Astroph., in press, arXiv:2010:09761 (2020); Villanueva G. et al. Nat. Ast. Matters Arising; arXiv:2010.14305 (2020); Thompson M. Mon. Not. Roy. Astron. Soc., in press, arXiv:2010.15118 (2020); Submitted to Nature Astronomy "Matters Arising" on Dec/10/2020
References in corpus (8)
- Phosphine Gas in the Cloud Decks of Venus
- The Venusian Lower Atmosphere Haze as a Depot for Desiccated Microbial Life: A Proposed Life Cycle for Persistence of the Venusian Aerial Biosphere
- No evidence of phosphine in the atmosphere of Venus by independent analyses
- Re-analysis of the 267-GHz ALMA observations of Venus: No statistically significant detection of phosphine
- A stringent upper limit of the PH abundance at the cloud top of Venus
- The statistical reliability of 267 GHz JCMT observations of Venus: No significant evidence for phosphine absorption
- Recovery of Spectra of Phosphine in Venus' Clouds
- Re-analysis of Phosphine in Venus' Clouds
Cited by in corpus (12)
- No evidence of phosphine in the atmosphere of Venus by independent analyses
- Venus' Mass Spectra Show Signs of Disequilibria in the Middle Clouds
- Re-analysis of Phosphine in Venus' Clouds
- Recovery of Spectra of Phosphine in Venus' Clouds
- Low levels of sulphur dioxide contamination of Venusian phosphine spectra
- Venus' Atmospheric Chemistry and Cloud Characteristics Are Compatible with Venusian Life
- Large Interferometer For Exoplanets (LIFE): VIII. Where is the phosphine? Observing exoplanetary PH3 with a space based MIR nulling interferometer
- Detecting Biosignatures in the Atmospheres of Gas Dwarf Planets with the James Webb Space Telescope
- Constraints on the production of phosphine by Venusian volcanoes
- Venusian phosphine: a 'Wow!' signal in chemistry?
- Using HITRAN to Model Opacities for Planetary Atmospheres: Test case of Microwave Spectra of NH, SO and PH
- Necessary Conditions for Earthly Life Floating in the Venusian Atmosphere