Photometric Mapping of Carbonaceous/Siliceous Dust and Water Ice in the ISM with JWST: Applications to the Dense Sightlines
arXiv:2507.17550 · doi:10.3847/1538-3881/adf103
Abstract
We introduce a new photometric mapping method for the James Webb Space Telescope (JWST) to measure the spatial distribution of carbonaceous dust, siliceous dust and water ice by using absorption features arising from the grains in the dense interstellar medium (ISM). Employing NIRCam and MIRI imaging filters, low-resolution spectroscopic data can be obtained to measure the optical depths of the 3.0-m water ice -OH feature, the 3.4-m aliphatic hydrocarbon -CH feature, and the 10-m silicate -SiO feature for large fields of view. This method provides extensive statistical data of the grains across wide fields in the ISM at minimal observing cost. In this study, we present its application on observational data from the literature to validate the measured optical depths and simulations to assess the accuracy of the method under various conditions. We showed that the photometric method can be employed to obtain reasonably accurate measurements of optical depth. We demonstrate that JWST optical depth maps enable the independent exploration of abundance distributions of major grain components across a wide spatial coverage in the ISM.
References in corpus (18)
- 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
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- The shape and composition of interstellar silicate grains
- Water in star-forming regions (WISH): Physics and chemistry from clouds to disks as probed by Herschel spectroscopy
- Absolute Physical Calibration in the Infrared
- Characterizing the nature of embedded young stellar objects through silicate, ice and millimeter observations
- A modular set of synthetic spectral energy distributions for young stellar objects
- The Composition of Interstellar Grains Toward Zeta Ophiuchi: Constraining the Elemental Budget Near the Diffuse-Dense Cloud Transition
- Silicate Composition of the Interstellar Medium
- Aliphatic hydrocarbon content of the interstellar dust
- Interstellar Extinction and Elemental Abundances
- Two dimensional ice mapping of molecular cores
- An updated modular set of synthetic spectral energy distributions for young stellar objects
- Water Ice in the Edge-On Orion Silhouette Disk 114--426 from JWST NIRCam Images
- Evolution of grain size distribution with enhanced abundance of small carbonaceous grains in galactic environments
- A method for mapping the aliphatic hydrocarbon content of interstellar dust towards the Galactic Centre
- Mapping the aliphatic hydrocarbon content of interstellar dust in the Galactic plane