activity
20172026
most citedTemperature structure and kinematics of the IRDC G035.39-00.33

37 citations · 100 across the 10 of their papers we have counts for

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Showing astro-ph.GAShow all

14 papers · 1 filter

astro-ph.GA2026

Surveying the Giant HII Regions of the Milky Way with SOFIA: VIII. W43 Main

James M. De Buizer, Wanggi Lim, James T. Radomski +1

In this eighth paper of the SOFIA-FORCAST series on Milky Way GHII regions, we present an analysis of the massive star-forming complex W43 Main. We compared our 11 - 37 micron maps…

astro-ph.GA2025

Surveying the Giant HII Regions of the Milky Way with SOFIA: VII. Galactic Center Regions Sgr B1, Sgr B2, and Sgr C

James M. De Buizer, Wanggi Lim, James T. Radomski +1

This study examines the mid-infrared properties of Giant HII (GHII) regions in the Milky Way's Central Molecular Zone (CMZ) -- Sgr B1, Sgr B2, and Sgr C -- using SOFIA-FORCAST imag…

astro-ph.GA2024

Polarized Light from Massive Protoclusters (POLIMAP). I. Dissecting the role of magnetic fields in the massive infrared dark cloud G28.37+0.07

C-Y Law, Jonathan C. Tan, Raphael Skalidis +11

Magnetic fields may play a crucial role in setting the initial conditions of massive star and star cluster formation. To investigate this, we report SOFIA-HAWC+ m observati…

astro-ph.GA2024

Surveying the Giant HII Regions of the Milky Way with SOFIA: VI. NGC 3603

James M. De Buizer, Wanggi Lim, Nicole Karnath +1

We present our sixth set of results from our mid-infrared imaging survey of Milky Way Giant HII regions with our detailed analysis of NGC 3603, the most luminous GHII region in the…

astro-ph.GA20234 cited

Surveying the Giant HII Regions of the Milky Way with SOFIA: V. DR7 and K3-50

James M. De Buizer, Wanggi Lim, James T. Radomski +1

We present our fifth set of results from our mid-infrared imaging survey of Milky Way Giant HII (GHII) regions with our detailed analysis of DR7 and K3-50. We obtained 20/25 and 37…

astro-ph.GA2023

Mother of Dragons: A Massive, quiescent core in the dragon cloud (IRDC G028.37+00.07)

A. T. Barnes, J. Liu, Q. Zhang +15

Context: Core accretion models of massive star formation require the existence of massive, starless cores within molecular clouds. Yet, only a small number of candidates for such t…