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Autori principali: Dumont, Antoine, Neumayer, Nadine, Seth, Anil C., Böker, Torsten, Eracleous, Michael, Goold, Kameron, Greene, Jenny E., Gültekin, Kayhan, Ho, Luis C., Walsh, Jonelle L., Lützgendorf, Nora
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2503.09697
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author Dumont, Antoine
Neumayer, Nadine
Seth, Anil C.
Böker, Torsten
Eracleous, Michael
Goold, Kameron
Greene, Jenny E.
Gültekin, Kayhan
Ho, Luis C.
Walsh, Jonelle L.
Lützgendorf, Nora
author_facet Dumont, Antoine
Neumayer, Nadine
Seth, Anil C.
Böker, Torsten
Eracleous, Michael
Goold, Kameron
Greene, Jenny E.
Gültekin, Kayhan
Ho, Luis C.
Walsh, Jonelle L.
Lützgendorf, Nora
contents The point-spread function of the integral-field unit (IFU) mode of the JWST's NIRSpec is heavily under-sampled, creating resampling noise seen as low-frequency sinusoidal-like artifacts, or "wiggles". These artifacts in the data are not corrected in the JWST data pipeline, and significantly impact the science that can be achieved at a single-pixel level. We present WICKED (WIggle Corrector Kit for NIRSpEc Data), a tool designed to empirically remove wiggles. WICKED uses the Fast Fourier Transform to identify wiggle-affected spaxels across the data cube. Spectra are modeled with a mix of integrated aperture and annular templates, a power-law, and a second-degree polynomial. The method works across all medium- and high-resolution NIRSpec gratings: F070LP, F100LP, F170LP, and F290LP. WICKED can recover the true overall spectral shape up to a factor of 3.5x better compared to uncorrected spectra. It recovers the equivalent width of absorption lines within 5% of the true value-~3x better than uncorrected spectra and ~2x better than other methods. WICKED significantly improves kinematic measurements, recovering the line-of-sight velocity (LOSV) within 1% of the true value -- more than 100x better than uncorrected spectra at S/N ~40. As a case study, we applied WICKED to G235H/F170LP IFU data of the elliptical galaxy NGC5128, finding good agreement with previous studies. In wiggle-affected regions, the uncorrected spectrum showed stellar LOSV and velocity dispersion differences compared to the WICKED-cleaned spectrum, of ~17x and ~36x larger than the estimated uncertainties, respectively. Wiggles in NIRSpec IFU data can introduce severe biases in spectral shape, line measurements, and kinematics to values larger than the typical uncertainties. WICKED provides a robust, user-friendly solution, enabling precise single-pixel studies and maximizing JWST's potential.
format Preprint
id arxiv_https___arxiv_org_abs_2503_09697
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle WIggle Corrector Kit for NIRSpEc Data: WICKED
Dumont, Antoine
Neumayer, Nadine
Seth, Anil C.
Böker, Torsten
Eracleous, Michael
Goold, Kameron
Greene, Jenny E.
Gültekin, Kayhan
Ho, Luis C.
Walsh, Jonelle L.
Lützgendorf, Nora
Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
The point-spread function of the integral-field unit (IFU) mode of the JWST's NIRSpec is heavily under-sampled, creating resampling noise seen as low-frequency sinusoidal-like artifacts, or "wiggles". These artifacts in the data are not corrected in the JWST data pipeline, and significantly impact the science that can be achieved at a single-pixel level. We present WICKED (WIggle Corrector Kit for NIRSpEc Data), a tool designed to empirically remove wiggles. WICKED uses the Fast Fourier Transform to identify wiggle-affected spaxels across the data cube. Spectra are modeled with a mix of integrated aperture and annular templates, a power-law, and a second-degree polynomial. The method works across all medium- and high-resolution NIRSpec gratings: F070LP, F100LP, F170LP, and F290LP. WICKED can recover the true overall spectral shape up to a factor of 3.5x better compared to uncorrected spectra. It recovers the equivalent width of absorption lines within 5% of the true value-~3x better than uncorrected spectra and ~2x better than other methods. WICKED significantly improves kinematic measurements, recovering the line-of-sight velocity (LOSV) within 1% of the true value -- more than 100x better than uncorrected spectra at S/N ~40. As a case study, we applied WICKED to G235H/F170LP IFU data of the elliptical galaxy NGC5128, finding good agreement with previous studies. In wiggle-affected regions, the uncorrected spectrum showed stellar LOSV and velocity dispersion differences compared to the WICKED-cleaned spectrum, of ~17x and ~36x larger than the estimated uncertainties, respectively. Wiggles in NIRSpec IFU data can introduce severe biases in spectral shape, line measurements, and kinematics to values larger than the typical uncertainties. WICKED provides a robust, user-friendly solution, enabling precise single-pixel studies and maximizing JWST's potential.
title WIggle Corrector Kit for NIRSpEc Data: WICKED
topic Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2503.09697