A survey of extended H2 emission from massive YSOs
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[1] R. Klessen,et al. COLLECTIVE OUTFLOW FROM A SMALL MULTIPLE STELLAR SYSTEM , 2014, 1404.5463.
[2] S. Lumsden,et al. Near-infrared integral field spectroscopy of massive young stellar objects , 2013, 1309.6139.
[3] M. Schirmer,et al. THELI: CONVENIENT REDUCTION OF OPTICAL, NEAR-INFRARED, AND MID-INFRARED IMAGING DATA , 2013, 1308.4989.
[4] R. Neri,et al. SiO collimated outflows driven by high-mass YSOs in G24.78+0.08 , 2012, 1212.0473.
[5] Edwin D. Loh,et al. Spartan Infrared Camera, a High-Resolution Imager for the SOAR Telescope: Design, Tests, and On-Telescope Performance , 2012 .
[6] H. Beuther,et al. JET FORMATION FROM MASSIVE YOUNG STARS: MAGNETOHYDRODYNAMICS VERSUS RADIATION PRESSURE , 2011, 1108.4924.
[7] Exeter,et al. The RMS Survey: Ammonia and water maser analysis of massive star forming regions. ⋆ , 2011, 1107.3913.
[8] H. Liu,et al. THE HIGH-VELOCITY MOLECULAR OUTFLOWS IN MASSIVE CLUSTER-FORMING REGION G10.6−0.4 , 2010, 1010.2785.
[9] P. Conti,et al. Spectrophotometric distances to Galactic H ii regions , 2010, 1009.3924.
[10] J. Mottram,et al. The Red MSX Source survey: the bolometric fluxes and luminosity distributions of young massive stars , 2010, 1009.1774.
[11] S. Ramsay,et al. A near-IR imaging survey of intermediate- and high-mass young stellar outflow candidates , 2010, 1001.2708.
[12] S. Lumsden,et al. The circumstellar disc, envelope and bipolar outflow of the massive young stellar object W33A , 2009, 0911.4592.
[13] S. Lumsden,et al. The RMS Survey: H2O masers towards a sample of southern hemisphere massive YSO candidates and ultra compact HII regions , 2009, 0909.1720.
[14] M. Hoare,et al. The slope of the near-infrared extinction law , 2009, 0908.1601.
[15] A. L. Busfield,et al. The RMS survey - 6 cm continuum VLA observations towards candidate massive YSOs in the northern hemisphere , 2009, 0905.1174.
[16] N. Marcelino,et al. Molecular outflows towards O-type young stellar objects , 2009, 0905.0548.
[17] R. Klein,et al. The Formation of Massive Star Systems by Accretion , 2009, Science.
[18] A. L. Busfield,et al. The RMS survey : 13CO observations of candidate massive YSOs in the northern Galactic plane , 2007, 0806.0953.
[19] Eric Bertin,et al. Automatic Astrometric and Photometric Calibration with SCAMP , 2006 .
[20] A. L. Busfield,et al. The RMS survey: radio observations of candidate massive YSOs in the southern hemisphere , 2006, Proceedings of the International Astronomical Union.
[21] M. Skrutskie,et al. The Two Micron All Sky Survey (2MASS) , 2006 .
[22] Kee-Tae Kim,et al. Occurrence Frequency of CO Outflows in Massive Protostellar Candidates , 2006, astro-ph/0601532.
[23] S. Molinari,et al. Search for CO Outflows toward a Sample of 69 High-Mass Protostellar Candidates. II. Outflow Properties , 2005 .
[24] H. Beuther,et al. Testing the Massive Disk Scenario for IRAS 18089–1732 , 2005, astro-ph/0504468.
[25] D. Schaerer,et al. A new calibration of stellar parameters of Galactic O stars , 2005, astro-ph/0503346.
[26] J. Bally,et al. The Birth of High-Mass Stars: Accretion and/or Mergers? , 2005, astro-ph/0502485.
[27] C. Benoist,et al. GaBoDS: The Garching-Bonn Deep Survey; IV. Methods for the Image reduction of multi-chip Cameras , 2005, astro-ph/0501144.
[28] R. Klein,et al. How Protostellar Outflows Help Massive Stars Form , 2004, astro-ph/0411526.
[29] S. Qin,et al. A study of high velocity molecular outflows with an up-to-date sample , 2004, astro-ph/0410727.
[30] W. Thi,et al. Evidence for an inner molecular disk around massive Young Stellar Objects , 2004, astro-ph/0410098.
[31] National Optical Astronomy Observatory,et al. Accretion Signatures from Massive Young Stellar Objects , 2004, Proceedings of the International Astronomical Union.
[32] P. Ho,et al. Mapping the Outflow from G5.89–0.39 in SiO J = 5 → 4 , 2004, astro-ph/0403524.
[33] L. Testi,et al. Clustered Star Formation in W75 N , 2002, astro-ph/0210555.
[34] J. Bally,et al. The Fountains of Youth: Irradiated Breakout of Outflows in S140 , 2002 .
[35] Edward Bruce Churchwell,et al. Ultra-Compact HII Regions and Massive Star Formation , 2002 .
[36] D. Richards,et al. The population of the Galactic plane as seen by MSX , 2002, astro-ph/0206391.
[37] C. Clarke,et al. Competitive accretion in embedded stellar clusters , 2001, astro-ph/0102074.
[38] B. Reipurth,et al. Proper Motions of the Inner Condensations in the HH 80-81 Thermal Radio Jet , 1998 .
[39] K. Menten,et al. The Formation of Massive Stars , 1998, Proceedings of the International Astronomical Union.
[40] I. Howarth,et al. The Young Massive Stellar Objects of M17 , 1997 .
[41] R. Bachiller. BIPOLAR MOLECULAR OUTFLOWS FROM YOUNG STARS AND PROTOSTARS , 1996 .
[42] E. Bertin,et al. SExtractor: Software for source extraction , 1996 .
[43] G. Garay,et al. The Thermal Radio Jet of Cepheus A HW2 and the Water Maser Distribution at 0.″08 Scale (60 AU) , 1996 .
[44] F. Adams,et al. Infall collapse solutions in the inner limit: Radiation pressure and its effects on star formation , 1995, astro-ph/9511095.
[45] G. Garay,et al. Cepheus A HW2: A powerful thermal radio jet , 1994 .
[46] E. Churchwell,et al. Massive stars embedded in molecular clouds - Their population and distribution in the galaxy , 1989 .
[47] N. Panagia,et al. Some physical parameters of early-type stars , 1973 .
[48] K. Menten,et al. **title** Asp Conference Series, Vol. **volume**, **publication Year** **editors** Massive Molecular Outflows , 2001 .
[49] M. Meyer,et al. Intrinsic near-infrared excesses of T tauri stars: Understanding the classical T tauri star locus , 1997 .
[50] E. Churchwell,et al. High-Velocity Molecular Gas from High-Mass Star Formation Regions , 1996 .
[51] F. Palla. The quest for evolutionarydiagrams of young stellar objects , 1996 .
[52] F. Adams,et al. Star Formation in Molecular Clouds: Observation and Theory , 1987 .
[53] M. Bate,et al. An Electronic Publication Dedicated to Early Stellar Evolution and Molecular Clouds Profiles of Strong Permitted Lines in Classical T Tauri Stars Predicting the Properties of Binary Stellar Systems: the Evolution of Accreting Protobinary Systems , 2022 .