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相关论文: Dense core formation by fragmentation of velocity-…

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(Abridged) Context. Core condensation is a critical step in the star-formation process, but is still poorly characterized observationally. Aims. We have studied the 10 pc-long L1495/B213 complex in Taurus to investigate how dense cores have…

星系天体物理 · 物理学 2015-06-15 A. Hacar , M. Tafalla , J. Kauffmann , A. Kovacs

We present mapping results of two prestellar cores, L1544 and L694-2, embedded in filamentary clouds in C$^{18}$O (3-2), $^{13}$CO (3-2), $^{12}$CO (3-2), HCO$^+$ (4-3), and H$^{13}$CO$^+$ (4-3) with the JCMT telescope to examine the role…

We present a solution for the observed core fragmentation of filaments in the Taurus L1517 dark cloud which previously could not be explained (Hacar et. al 2011). Core fragmentation is a vital step for the formation of stars. Observations…

太阳与恒星天体物理 · 物理学 2017-05-16 Stefan Heigl , Andreas Burkert , Alvaro Hacar

We study the kinematics of the dense gas of starless and protostellar cores traced by the N2D+(2-1), N2H+(1-0), DCO+(2-1), and H13CO+(1-0) transitions along the L1495 filament and the kinematic links between the cores and the surrounding…

星系天体物理 · 物理学 2018-09-12 A. Punanova , P. Caselli , J. E. Pineda , A. Pon , M. Tafalla , A. Hacar , L. Bizzocchi

(Abridged) We study the kinematics of the dense gas in the Taurus L1495/B213 filamentary region to investigate the mechanism of core formation. We use observations of N2H+(1-0) and C18O(2-1) carried out with the IRAM 30m telescope. We find…

星系天体物理 · 物理学 2015-02-04 M. Tafalla , A. Hacar

Dense molecular filaments are central to the star formation process, but the detailed manner in which they fragment into prestellar cores is not yet well understood. Here, we investigate the fragmentation properties and dynamical state of…

太阳与恒星天体物理 · 物理学 2020-10-07 Guo Yin Zhang , Ph. Andre , A. Menshchikov , Ke Wang

Filamentary structures are ubiquitous in high-mass star-forming molecular clouds. Their relation with high-mass star formation is still to be understood. Here we report interferometric observations toward 8 filamentary high-mass…

We discuss the fragmentation of a filamentary cloud on the basis of a 1-dimensional hydrodynamical simulation of a self-gravitating gas cloud. The simulation shows that dense cores are produced with a semi-regular interval in space and time…

天体物理学 · 物理学 2009-10-22 Tomoyuki Hanawa , Satoshi Yamamoto , Yasuhiro Hirahara

We present results of an extensive mapping survey of N2H+(1-0) in about 60 low mass cloud cores already mapped in the NH3(1,1) inversion transition line. The survey has been carried out at the FCRAO antenna with an angular resolution about…

天体物理学 · 物理学 2010-04-06 Paola Caselli , Priscilla J. Benson , Philip C. Myers , Mario Tafalla

To characterize the initial conditions for intermediate- to high-mass star formation, we observed two Infrared Dark Clouds (IRDCs) that remain absorption features up to 70mum wavelength, with the PdBI in the 3.23mm dust continuum as well as…

太阳与恒星天体物理 · 物理学 2015-05-13 Henrik Beuther , Thomas Henning

Exploring the structure and dynamics of cold starless clouds is necessary to understand the different steps leading to the formation of protostars. Because clouds evolve slowly, many of them must be studied in detail to pick up different…

Some theories of dense molecular cloud formation involve dynamical environments driven by converging atomic flows or collisions between preexisting molecular clouds. The determination of the dynamics and physical conditions of the gas in…

太阳与恒星天体物理 · 物理学 2015-06-18 I. Jimenez-Serra , P. Caselli , F. Fontani , J. C. Tan , J. D. Henshaw , J. Kainulainen , A. K. Hernandez

We carried out an unbiased mapping survey of dense molecular cloud cores traced by the NH3 (1,1) and (2,2) inversion lines in the GF9 filament which contains an extremely young low-mass protostar GF9-2 (Furuya et al. 2006, ApJ, 653, 1369).…

天体物理学 · 物理学 2015-05-13 Ray S. Furuya , Yoshimi Kitamura , Hiroko Shinnaga

Stars form from dense cores in turbulent molecular clouds. According to the standard scenario of star formation, dense cores are created by cloud fragmentation. However, the physical mechanisms driving this process are still not fully…

星系天体物理 · 物理学 2025-03-11 Kousuke Ishihara , Fumitaka Nakamura , Patricio Sanhueza , Masao Saito

We present high-resolution ($\sim$1000 AU) 3 mm observations with the NOrthern Extended Millimeter Array toward the DR21 South Filament, aiming to reveal its internal fragmentation and search for deeply embedded star-forming activities.…

星系天体物理 · 物理学 2026-02-13 Kai Yang , Keping Qiu , Xing Pan

We present new Plateau de Bure Interferometer observations of a region in the filamentary infrared-dark cloud (IRDC) G011.11-0.12 containing young, star-forming cores. In addition to the 3.2mm continuum emission from cold dust, we map this…

星系天体物理 · 物理学 2015-01-14 Sarah E. Ragan , Thomas Henning , Henrik Beuther , Hendrik Linz , Sarolta Zahorecz

Filamentary structures are ubiquitously found in high-mass star-forming clouds. To investigate the relationship between filaments and star formation, we carry out the INFANT (INvestigations of massive Filaments ANd sTar formation) survey, a…

In the standard picture of isolated star formation, dense ``starless'' cores are formed out of magnetic molecular clouds due to ambipolar diffusion. Under the simplest spherical geometry, I demonstrate that ``starless'' cores formed this…

天体物理学 · 物理学 2009-10-31 Zhi-Yun Li

We present molecular-line observations of 94 dark cloud cores identified in the Pipe nebula through near-IR extinction mapping. Using the Arizona Radio Observatory 12m telescope, we obtained spectra of these cores in the J=1-0 transition of…

天体物理学 · 物理学 2009-11-13 August A. Muench , Charles J. Lada , Jill M. Rathborne , João F. Alves , M. Lombardi

To study physical properties of the natal filament gas around the cloud core harboring an exceptionally young low-mass protostar GF9-2, we carried out J=1-0 line observations of 12CO, 13CO, and C18O molecules using the Nobeyama 45m…

星系天体物理 · 物理学 2015-06-22 Ray S. Furuya , Yoshimi Kitamura , Hiroko Shinnaga
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