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相关论文: 3D Dust Mapping Reveals that Orion Forms Part of a…

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We present a map of the three-dimensional (3D) distribution of dust in the Orion complex. Orion is the closest site of high-mass star formation, making it an excellent laboratory for studying the interstellar medium and star formation. We…

星系天体物理 · 物理学 2018-08-15 S. Rezaei Kh. , C. A. L. Bailer-Jones , E. F. Schlafly , M. Fouesneau

The unprecedented astrometry from Gaia DR2 provides us with an opportunity to study in detail molecular clouds in the solar neighbourhood. Extracting the wealth of information in these data remains a challenge, however. We have further…

星系天体物理 · 物理学 2020-11-18 Sara Rezaei Kh. , Coryn A. L. Bailer-Jones , Juan D. Soler , Eleonora Zari

The Sun is located close to the Galactic mid-plane, meaning that we observe the Galaxy through significant quantities of dust. Moreover, the vast majority of the Galaxy's stars also lie in the disc, meaning that dust has an enormous impact…

星系天体物理 · 物理学 2024-01-24 Amery Gration , John Magorrian

The giant molecular cloud Orion A is the closest massive star-forming region to earth ($d\sim400$ pc). It contains the rich Orion Nebula Cluster (ONC) in the North, and low-mass star-forming regions (L1641, L1647) to the South. To get a…

星系天体物理 · 物理学 2018-12-20 Josefa E. Großschedl , João Alves , Stefan Meingast , Birgit Hasenberger

The Orion star formation complex is the nearest region of on-going star formation that continues to produce both low and high mass stars. Orion is discussed in the larger context of star formation in the Solar vicinity over the last 100…

天体物理学 · 物理学 2008-12-02 John Bally

Barnard's Loop is a famous arc of H$\alpha$ emission located in the Orion star-forming region. Here, we provide evidence of a possible formation mechanism for Barnard's Loop and compare our results with recent work suggesting a major…

We present observational results of the thermal dust continuum emission and its linear polarization in one of the nearest massive star-forming sites Orion BN/KL in Orion Molecular Cloud-1. The observations were carried out with the…

星系天体物理 · 物理学 2015-05-19 Ya-Wen Tang , Paul T. P. Ho , Patrick M. Koch , Ramprasad Rao

The Orion OB1 Association, at a distance of roughly 400 pc and spanning over ~200 deg^2 on the sky, is one of the largest and nearest OB associations. With a wide range of ages and environmental conditions, Orion is an ideal laboratory for…

天体物理学 · 物理学 2008-10-15 Cesar Briceno

(abridged) We determine the disk mass distribution around 336 stars in the young Orion Nebula cluster by imaging a 2.5' x 2.5' region in 3 mm continuum emission with the Owens Valley Millimeter Array. For this sample of 336 stars, we…

天体物理学 · 物理学 2009-11-11 J. A. Eisner , John M. Carpenter

Large scale far-infrared (FIR) observations of the Orion complex at 205 and 138 micron are presented with an aim of studying the distribution of cold (< 25 K) dust. The maps in these FIR bands extend over approximately 3600 sq. arcmin and…

天体物理学 · 物理学 2009-10-31 B. Mookerjea , S. K. Ghosh , T. N. Rengarajan , S. N. Tandon , R. P. Verma

We use the $\mathit{Gaia}$ DR2 distances of about 700 mid-infrared selected young stellar objects in the benchmark giant molecular cloud Orion A to infer its 3D shape and orientation. We find that Orion A is not the fairly straight…

The new Gaia data release (EDR3) with improved astrometry has opened a new era in studying our Milky Way in fine detail. We use Gaia EDR3 astrometry together with 2MASS and WISE photometry to study two of the most massive molecular clouds…

星系天体物理 · 物理学 2022-05-25 Sara Rezaei Kh. , Jouni Kainulainen

The Orion Complex is a notable star forming region, that it is fragmented into several different populations that have substantial difference in their phase space. I propose a model that attempts to explain the how the Complex has evolved…

太阳与恒星天体物理 · 物理学 2020-10-28 Marina Kounkel

Magnetic fields permeate the interstellar medium and are important in the star formation process. Determining the 3D magnetic fields of molecular clouds will allow us to better understand their role in the evolution of these clouds and…

The fast outflow emerging from a region associated with massive star formation in the Orion Molecular Cloud 1 (OMC-1), located behind the Orion Nebula, appears to have been set in motion by an explosive event. Here we study the structure…

星系天体物理 · 物理学 2012-03-15 H. D. Nissen , N. J. Cunningham , M. Gustafsson , J. Bally , J. -L. Lemaire , C. Favre , D. Field

[Abridged] We imaged a 2' x 2' region of the Orion Nebula cluster in 1.3 mm wavelength continuum emission with the recently commissioned Combined Array for Research in Millimeter Astronomy (CARMA) and with the Submillimeter Array (SMA). Our…

天体物理学 · 物理学 2009-11-13 J. A. Eisner , R. L. Plambeck , John M. Carpenter , S. A. Corder , C. Qi , D. Wilner

Dust is an important tracer of the structure of interstellar clouds, as well as a central factor in the thermal balance and chemistry of the clouds. Our knowledge of the dust properties is nevertheless incomplete, especially regarding the…

星系天体物理 · 物理学 2026-02-18 M. Juvela , N. Ysard

Disks around intermediate mass stars called Herbig disks are the formation sites of giant exoplanets. Obtaining a complete inventory of these disks will therefore give insights into giant planet formation. However, until now no complete…

地球与行星天体物理 · 物理学 2025-01-08 L. M. Stapper , M. R. Hogerheijde , E. F. van Dishoeck , A. S. Booth , S. L. Grant , S. E. van Terwisga

The dust cloud around $\lambda$ Orionis is observed to be circularly symmetric with a large angular extent ($\approx$ 8 degrees). However, whether the three-dimensional (3D) structure of the cloud is shell- or ring-like has not yet been…

星系天体物理 · 物理学 2015-05-25 Dukhang Lee , Kwang-Il Seon , Young-Soo Jo

We have studied optical properties of interstellar dust around the Orion A molecular cloud to investigate the size distribution and the composition of dust grains. Orion A is one of the most studied molecular clouds in the solar vicinity…

星系天体物理 · 物理学 2021-07-12 Hayato Uehara , Kazuhito Dobashi , Shingo Nishiura , Tomomi Shimoikura , Takahiro Naoi
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