Measuring metal sulfides in interstellar dust with PRIMA

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Jiménez-Serra, Izaskun, Zeng, Shaoshan, Yang, Yao-Lun, Taillard, Angèle, Rey-Montejo, Marta, Colzi, Laura, Sakai, Nami, Fuente, Asunción
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911133979377664
author Jiménez-Serra, Izaskun
Zeng, Shaoshan
Yang, Yao-Lun
Taillard, Angèle
Rey-Montejo, Marta
Colzi, Laura
Sakai, Nami
Fuente, Asunción
author_facet Jiménez-Serra, Izaskun
Zeng, Shaoshan
Yang, Yao-Lun
Taillard, Angèle
Rey-Montejo, Marta
Colzi, Laura
Sakai, Nami
Fuente, Asunción
contents Sulfur is known to undergo severe depletion when moving from diffuse clouds to the denser regimes of the interstellar medium in molecular clouds. The form in which sulfur gets depleted onto dust grains, however, remains a mystery. One possibility is that sulfur gets locked in interstellar dust in the form of sulfide minerals. Recently, metal sulfides such as NaS and MgS have been detected in a shocked molecular cloud in the Galactic Center, suggesting that these molecules could represent an important reservoir of sulfur in dust grains. In this contribution, we discuss the prospect of observing metal sulfides such as MgS and FeS in absorption experiments carried out with the FIRESS instrument onboard PRIMA using its low resolution observing mode. Our estimates show that the molecular bands of MgS and FeS found between 20 and 50 $μ$m could be detected in absorption with S/N ${\geq}$ 5 for sources brighter than 200 mJy in just 1 h of observing time against low-mass protostellar objects. This science case, therefore, has the potential to unveil the main reservoir of sulfur in interstellar dust, constraining in what form sulfur is incorporated into minor bodies of our solar system.
format Preprint
id arxiv_https___arxiv_org_abs_2509_02067
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Measuring metal sulfides in interstellar dust with PRIMA
Jiménez-Serra, Izaskun
Zeng, Shaoshan
Yang, Yao-Lun
Taillard, Angèle
Rey-Montejo, Marta
Colzi, Laura
Sakai, Nami
Fuente, Asunción
Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
Sulfur is known to undergo severe depletion when moving from diffuse clouds to the denser regimes of the interstellar medium in molecular clouds. The form in which sulfur gets depleted onto dust grains, however, remains a mystery. One possibility is that sulfur gets locked in interstellar dust in the form of sulfide minerals. Recently, metal sulfides such as NaS and MgS have been detected in a shocked molecular cloud in the Galactic Center, suggesting that these molecules could represent an important reservoir of sulfur in dust grains. In this contribution, we discuss the prospect of observing metal sulfides such as MgS and FeS in absorption experiments carried out with the FIRESS instrument onboard PRIMA using its low resolution observing mode. Our estimates show that the molecular bands of MgS and FeS found between 20 and 50 $μ$m could be detected in absorption with S/N ${\geq}$ 5 for sources brighter than 200 mJy in just 1 h of observing time against low-mass protostellar objects. This science case, therefore, has the potential to unveil the main reservoir of sulfur in interstellar dust, constraining in what form sulfur is incorporated into minor bodies of our solar system.
title Measuring metal sulfides in interstellar dust with PRIMA
topic Instrumentation and Methods for Astrophysics
Astrophysics of Galaxies
url https://arxiv.org/abs/2509.02067