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相关论文: [OI]63micron jets in class 0 sources detected by H…

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We present Spitzer-IRS spectra obtained along the molecular jet from the Class 0 source L1448-C (or L1448-mm). Atomic lines from the fundamental transitions of [FeII], [SiII] and [SI] have been detected showing, for the first time, the…

天体物理学 · 物理学 2011-02-11 O. Dionatos , B. Nisini , R. Garcia Lopez , T. Giannini , C. J. Davis , M. D. Smith , T. P. Ray , M. De Luca

Star-formation feedback onto the parent cloud is conventionally examined through the study of molecular outflows. Little is however known on the effect that atomic ejecta, tracing fast shocks, can have on the global cloud properties. In…

太阳与恒星天体物理 · 物理学 2016-12-28 Odysseas Dionatos , Manuel Güdel

We present the first detection of a jet in the far-IR [O I] lines from an intermediate mass protostar. We have carried out a Herschel/PACS spectral mapping study in the [O I] lines of OMC-2 FIR 3 and FIR 4, two of the most luminous…

In molecular outflows from forming low-mass protostars, most oxygen is expected to be locked up in water. However, Herschel observations have shown that typically an order of magnitude or more of the oxygen is still unaccounted for. To test…

太阳与恒星天体物理 · 物理学 2017-04-26 L. E. Kristensen , A. Gusdorf , J. C. Mottram , A. Karska , R. Visser , H. Wiesemeyer , R. Güsten , R. Simon

We present Herschel/PACS observations of L1448-MM, a Class 0 protostar with a prominent outflow. Numerous emission lines are detected at 55 < lambda < 210 micrometer including CO, OH, H2O, and [O I]. We investigate the spatial distribution…

We present velocity resolved SOFIA/upGREAT observations of [OI] and [CII] lines toward a Class I protostar, L1551 IRS 5, and its outflows. The SOFIA observations detect [OI] emission toward only the protostar and [CII] emission toward the…

We present SOFIA/FIFI-LS observations of three Class 0 and one Class I outflows (Cep E, HH 1, HH 212, and L1551 IRS5) in the far-infrared [O I]63mum and [O I]145mum transitions. Spectroscopic [O I]63mum maps enabled us to infer the spatial…

太阳与恒星天体物理 · 物理学 2021-07-07 T. Sperling , J. Eislöffel , B. Nisini , T. Giannini , C. Fischer , A. Krabbe

We report Very Large Array (VLA) observations in the Q-band toward 10 ionized jet candidates to search for SiO emission, a well-known shocked gas tracer. We detected 7 mm continuum counterparts toward 90% of the jet candidates. In most…

星系天体物理 · 物理学 2023-02-01 Tatiana M. Rodriguez , Peter Hofner , Isaac Edelman , Esteban D. Araya , Viviana Rosero

We present ${\sim}0.2$ arcsec ($\sim$80 au) resolution observations of the CO (2-1) and SiO (5-4) lines made with the Atacama large millimeter/submillimeter array toward an extremely young intermediate-mass protostellar source (t$_{\rm…

We investigate on the spatial and velocity distribution of H2O along the L1448 outflow, its relationship with other tracers, and its abundance variations, using maps of the o-H2O 1_{10}-1_{01} and 2_{12}-1_{01} transitions taken with the…

In this paper we present the first SiO multiline analysis (from J=2-1 to J=11-10) of the molecular bullets along the outflows of the Class 0 sources L1448-mm and L1157-mm, obtained through observations with IRAM and JCMT. We have computed…

天体物理学 · 物理学 2009-11-11 B. Nisini , C. Codella , T. Giannini , J. Santiago Garcia , J. S. Richer , R. Bachiller , M. Tafalla

The protostellar jet driven by L1448C was observed in the SiO J=8-7 and CO J=3-2 lines and 350 GHz dust continuum at ~1" resolution with the Submillimeter Array (SMA). A narrow jet from the northern source L1448C(N) was observed in the SiO…

太阳与恒星天体物理 · 物理学 2015-05-18 Naomi Hirano , Paul P. T. Ho , Sheng-Yuan Liu , Hsien Shang , Chin-Fei Lee , Tyler L. Bourke

We present high sensitivity and high angular resolution images of the high velocity (vLSR>30kms^-1) CO emission in the J=1-0 and J=2-1 lines of the Orion KL region. These results reveal the morphology of the high-velocity CO emission at the…

天体物理学 · 物理学 2007-05-23 A. Rodriguez-Franco , J. Martin-Pintado , T. L. Wilson

L1448C(N) is a young protostar in Perseus, driving an outflow and an extremely high-velocity (EHV) molecular jet. We present multi-epoch observations of SiO $J = 8-7$, CO $J = 3-2$ lines, and 345 GHz dust continuum toward L1448C(N) in 2006,…

太阳与恒星天体物理 · 物理学 2021-01-20 Tomohiro Yoshida , Tien-Hao Hsieh , Naomi Hirano , Yusuke Aso

We present the first results of the JWST program PROJECT-J (PROtostellar JEts Cradle Tested with JWST ), designed to study the Class I source HH46 IRS and its outflow through NIRSpec and MIRI spectroscopy (1.66 to 28 micron). The data…

Some theoretical models propose that O-B stars form via accretion, in a similar fashion to low-mass stars. Jet-driven molecular outflows play an important role in this scenario, and their study can help to understand the process of…

Observations of the atomic and molecular line emission associated with jets and outflows emitted by young stellar objects can be used to trace the various evolutionary stages they pass through as they evolve to become main sequence stars.…

太阳与恒星天体物理 · 物理学 2015-06-05 L. Podio , I. Kamp , D. Flower , C. Howard , G. Sandell , A. Mora , G. Aresu , S. Brittain , W. F. R. Dent , C. Pinte , G. J. White

We present a study of the central zone of the star-forming region L1448 at 217--230 GHz ($\sim$ 1.3 mm) using ALMA observations. Our study focuses on the detection of proto-stellar molecular outflows and the interaction with the surrounding…

Multispectral studies of nearby, forming stars provide insights into all classes of accreting systems. Objects which have magnetic fields, spin, and accrete produce jets and collimated outflows. Jets are seen in systems ranging from brown…

星系天体物理 · 物理学 2024-01-12 John Bally

L1157-mm powers a molecular outflow that is well-known for its shock-induced chemical activity in several hot-spots. We have studied the molecular emission toward L1157-mm searching for a jet component responsible for these spots. We used…

星系天体物理 · 物理学 2014-12-24 M. Tafalla , R. Bachiller , B. Lefloch , N. Rodríguez-Fernández , C. Codella , A. López-Sepulcre , L. Podio
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