h ii region
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2022 ◽  
Vol 924 (2) ◽  
pp. 50
Author(s):  
John Bally ◽  
Zen Chia ◽  
Adam Ginsburg ◽  
Bo Reipurth ◽  
Kei E. I Tanaka ◽  
...  

Abstract Multi-epoch narrowband Hubble Space Telescope images of the bipolar H ii region Sh2-106 reveal highly supersonic nebular proper motions that increase with projected distance from the massive young stellar object S106 IR, reaching over ∼30 mas yr−1 (∼150 km s−1 at D = 1.09 kpc) at a projected separation of ∼1.′4 (0.44 pc) from S106 IR. We propose that S106 IR experienced a ∼1047 erg explosion ∼3500 yr ago. The explosion may be the result of a major accretion burst or a recent encounter with another star, or a consequence of the interaction of a companion with the bloated photosphere of S106 IR as it grew from ∼10 through ∼15 M ⊙ at a high accretion rate. Near-IR images reveal fingers of H2 emission pointing away from S106 IR and an asymmetric photon-dominated region surrounding the ionized nebula. Radio continuum and Brγ emission reveal a C-shaped bend in the plasma, indicating either the motion of S106 IR toward the east, or the deflection of plasma toward the west by the surrounding cloud. The H ii region bends around a ∼1′ diameter dark bay west of S106 IR that may be shielded from direct illumination by a dense molecular clump. Herbig–Haro and Molecular Hydrogen Objects tracing outflows powered by stars in the Sh2-106 protocluster such as the Class 0 source S106 FIR are discussed.


2021 ◽  
Vol 922 (2) ◽  
pp. 207
Author(s):  
N. K. Bhadari ◽  
L. K. Dewangan ◽  
P. M. Zemlyanukha ◽  
D. K. Ojha ◽  
I. I. Zinchenko ◽  
...  

Abstract We report an observational study of the Galactic H ii region Sh 2-305/S305 using the [C ii] 158 μm line data, which are used to examine the gas dynamics and structure of photodissociation regions. The integrated [C ii] emission map at [39.4, 49.5] km s−1 spatially traces two shell-like structures (i.e., inner and outer neutral shells) having a total mass of ∼565 M ⊙. The inner neutral shell encompasses an O9.5V star at its center and has a compact ring-like appearance. However, the outer shell is seen with more extended and diffuse [C ii] emission, hosting an O8.5V star at its center, and surrounds the inner neutral shell. The velocity channel maps and position–velocity diagrams confirm the presence of a compact [C ii] shell embedded in the diffuse outer shell, and both the shells seem to expand with v exp ∼ 1.3 km s−1. The outer shell appears to be older than the inner shell, hinting that these shells are formed sequentially. The [C ii] profiles are examined toward S305, which are either double peaked or blue skewed and have the brighter redshifted component. The redshifted and blueshifted components spatially trace the inner and outer neutral shell geometry, respectively. The ionized, neutral, and molecular zones in S305 are seen adjacent to one another around the O-type stars. The regularly spaced dense molecular and dust clumps (mass ∼10–103 M ⊙) are investigated around the neutral shells, which might have originated as a result of gravitational instability in the shell of collected materials.


2021 ◽  
Vol 254 (2) ◽  
pp. 36
Author(s):  
Trey V. Wenger ◽  
J. R. Dawson ◽  
John M. Dickey ◽  
C. H. Jordan ◽  
N. M. McClure–Griffiths ◽  
...  
Keyword(s):  

2021 ◽  
Vol 913 (1) ◽  
pp. 29
Author(s):  
M. Fernández-López ◽  
P. Sanhueza ◽  
L. A. Zapata ◽  
I. Stephens ◽  
C. Hull ◽  
...  

2021 ◽  
Vol 910 (2) ◽  
pp. 159
Author(s):  
J. L. Mascoop ◽  
L. D. Anderson ◽  
Trey. V. Wenger ◽  
Z. Makai ◽  
W. P. Armentrout ◽  
...  

2021 ◽  
Vol 911 (2) ◽  
pp. 91
Author(s):  
André-Nicolas Chené ◽  
Robert A. Benjamin ◽  
Sebastian Ramírez-Alegría ◽  
Jura Borissova ◽  
Radostin Kurtev ◽  
...  

2021 ◽  
Vol 910 (2) ◽  
pp. 129
Author(s):  
Carter Rhea ◽  
Laurie Rousseau-Nepton ◽  
Simon Prunet ◽  
Myriam Prasow-Émond ◽  
Julie Hlavacek-Larrondo ◽  
...  

2021 ◽  
Vol 503 (2) ◽  
pp. 2187-2194
Author(s):  
Daniel P Cohen ◽  
Jean L Turner ◽  
Sara C Beck ◽  
S Michelle Consiglio

ABSTRACT We report Keck–NIRSPEC observations of the Brackett α 4.05 μm recombination line across the two candidate embedded super star clusters (SSCs) in NGC 1569. These SSCs power a bright H ii region and have been previously detected as radio and mid-infrared sources. Supplemented with high-resolution VLA mapping of the radio continuum along with IRTF–TEXES spectroscopy of the [S iv] 10.5 μm line, the Brackett α data provide new insight into the dynamical state of gas ionized by these forming massive clusters. Near-infrared sources detected in 2 μm images from the slit-viewing Camera are matched with Gaia sources to obtain accurate celestial coordinates and slit positions to within ∼0${_{.}^{\prime\prime}}$1. Br α is detected as a strong emission peak powered by the less luminous infrared source, MIR1 (LIR ∼ 2 × 107 $\rm L_\odot$). The second candidate SSC MIR2 is more luminous (LIR ≳ 4 × 108 $\rm L_\odot$) but exhibits weak radio continuum and Br α emission, suggesting the ionized gas is extremely dense (ne ≳ 105 cm−3), corresponding to hypercompact H ii regions around newborn massive stars. The Br α and [S iv] lines across the region are both remarkably symmetric and extremely narrow, with observed line widths Δv ≃ 40 $\rm km\, s^{-1}$, full width at half-maximum. This result is the first clear evidence that feedback from NGC 1569’s youngest giant clusters is currently incapable of rapid gas dispersal, consistent with the emerging theoretical paradigm in the formation of giant star clusters.


2021 ◽  
Vol 253 (1) ◽  
pp. 23 ◽  
Author(s):  
W. P. Armentrout ◽  
L. D. Anderson ◽  
Trey V. Wenger ◽  
Dana S. Balser ◽  
T. M. Bania
Keyword(s):  

2021 ◽  
Vol 503 (1) ◽  
pp. 633-642
Author(s):  
M S Kirsanova ◽  
S V Salii ◽  
S V Kalenskii ◽  
D S Wiebe ◽  
A M Sobolev ◽  
...  

ABSTRACT We study molecular emission in a massive condensation at the border of the H ii region RCW 120, paying particular attention to the Core 1 and 2 objects, the most massive fragments of the condensation found previously by ALMA. The latter fragment was previously suggested to host a high-mass analogue of Class 0 young stellar object. We present spectra of molecular emission in the 1 mm range made with the APEX telescope. We detect CH3OH and C34S lines in Cores 1 and 2. The CH3CN series and the SO2 lines are only found in Core 2. We estimate gas physical parameters using methanol lines and obtain gas temperature less than 100 K in both regions. Molecular hydrogen number density in Core 2 is in the range of 105−107 cm−3 and is more uncertain in Core 1. However, the detection of the CH3CN lines corresponding to highly excited transitions (Eu > 400 K) in Core 2 indicates that the region contains hot gas, while the abundances of CH3OH, CS, SO2, and CH3CN are quite low for a hot core stage. We propose that Core 2 is in the warm-up phase prior to the establishing of the hot gas chemistry. We suggest that Core 2 is in the beginning of the hot core stage. There are no detected CH3CN lines in Core 1; therefore, it might be on an even less evolved evolutionary stage.


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