NAME lam Ori Complex , the SIMBAD biblio

NAME lam Ori Complex , the SIMBAD biblio (79 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.05.13CEST16:12:39


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Title First 3 Authors
1988ApJ...331..974K 2 4 34 Small-scale structure in the interstellar medium. I. Discovery of very small molecular clouds toward alpha Orionis. KNAPP G.R. and BOWERS P.F.
1995ApJ...441L..93H 11 37 Large HCO+ and HCN abundances in the translucent cloud towards PKS 0528+134. HOGERHEIJDE M.R., DE GEUS E.J., SPAANS M., et al.
1998ApJ...507..241P 117 74 Origin and evolution of the Cepheus bubble. PATEL N.A., GOLDSMITH P.F., HEYER M.H., et al.
1998PASA...15...70L 11 7 CO observations of the lambda-Orionis ring. LANG W.J. and MASHEDER M.R.W.
1999AJ....118.2409D viz 87 48 A WIYN lithium survey for young stars in the λ Orionis star-forming region. DOLAN C.J. and MATHIEU R.D.
1999Ap.....42..234N 18 0 T associations in X-rays. NEUHAEUSER R. and HAMBARYAN V.
2001AJ....121.2124D viz 366 93 The spatial distribution of the λ Orionis pre-main-sequence population. DOLAN C.J. and MATHIEU R.D.
2001ApJ...562..852H 7 21 503 Rapid formation of molecular clouds and stars in the solar neighborhood. HARTMANN L., BALLESTEROS-PAREDES J. and BERGIN E.A.
2002AJ....123..387D viz 74 T                   9 44 A photometric study of the young stellar population throughout the λ Orionis star-forming region. DOLAN C.J. and MATHIEU R.D.
2002AJ....123.1701T 51 77 Spectroscopic binaries in a sample of ROSAT X-ray sources south of the Taurus molecular clouds. TORRES G., NEUHAEUSER R. and GUENTHER E.W.
2002ApJ...581.1194P viz 231 98 Star formation in space and time: Taurus-Auriga. PALLA F. and STAHLER S.W.
2003A&A...405..149F 48 75 Further identification of ROSAT all-sky survey sources in Orion. FRASCA A., ALCALA J.M., COVINO E., et al.
2003AJ....126.1423K viz 1345 26 Observations of star-forming regions with the Midcourse Space Experiment. KRAEMER K.E., SHIPMAN R.F., PRICE S.D., et al.
2005MNRAS.360.1506K 72 189 The initial conditions of isolated star formation - VI. SCUBA mapping of pre-stellar cores. KIRK J.M., WARD-THOMPSON D. and ANDRE P.
2007ApJ...657..884L viz 133 52 Triggered star formation by massive stars. LEE H.-T. and CHEN W.P.
2007AJ....133.1528C viz 209 48 Infrared nebulae around young stellar objects. CONNELLEY M.S., REIPURTH B. and TOKUNAGA A.T.
2007MNRAS.378.1447F 90       D         F     3 18 33 A large-scale extinction map of the Galactic Anticentre from 2MASS. FROEBRICH D., MURPHY G.C., SMITH M.D., et al.
2008ApJ...678L..29R 38           X         1 9 5 Global far-ultraviolet image of the Eridanus superbubble observed by FIMS/SPEAR. RYU K., MIN K.W., SEON K.-I., et al.
2009AJ....137.3487M 114           X         3 13 6 The highly eccentric Pre-Main-Sequence spectroscopic binary RX J0529.3+1210. MACE G.N., PRATO L., WASSERMAN L.H., et al.
2009ApJ...697..493B 38           X         1 10 2 HDE 245059: a weak-lined T Tauri binary revealed by Chandra and Keck. BALDOVIN-SAAVEDRA C., AUDARD M., DUCHENE G., et al.
2010ApJ...718..105D 168       D       C F     3 33 43 On the temporal evolution of the stellar mass function in galactic clusters. DE MARCHI G., PARESCE F. and PORTEGIES ZWART S.
2010MNRAS.406.1350F 93       D     X         3 21 74 The structure of molecular clouds - II. Column density and mass distributions. FROEBRICH D. and ROWLES J.
2011A&A...530A.150F viz 115           X         3 148 6 XMM-Newton observations of the young open cluster around λ Orionis. FRANCIOSINI E. and SACCO G.G.
2011MNRAS.416..294R 207       D     X         6 20 4 The structure of molecular clouds – III. A link between cloud structure and star formation mode. ROWLES J. and FROEBRICH D.
2011A&A...536A..63B viz 216 64 Spectroscopy of very low mass stars and brown dwarfs in the lambda Orionis star forming region. I. Enlarging the census down to the planetary mass domain in Collinder 69. BAYO A., BARRADO D., STAUFFER J., et al.
2012A&A...547A..80B viz 333 T   A     X C       7 178 30 Spectroscopy of very low-mass stars and brown dwarfs in the
Lambda Orionis star-forming region. II. Rotation, activity and other properties of spectroscopically confirmed members of Collinder 69.
BAYO A., BARRADO D., HUELAMO N., et al.
2012A&A...548A.113D 40           X         1 14 52 The enigmatic nature of the circumstellar envelope and bow shock surrounding Betelgeuse as revealed by Herschel. I. Evidence of clumps, multiple arcs, and a linear bar-like structure. DECIN L., COX N.L.J., ROYER P., et al.
2008HSFR1.B....757M 75 T                   1 2 0 The λ Orionis star forming region. MATHIEU R.D.
2014A&A...561A..54R 254       D     X C F     5 24 125 Disk evolution in the solar neighborhood. I. Disk frequencies from 1 to 100 myr. RIBAS A., MERIN B., BOUY H., et al.
2015ApJ...806..274L 318           X         8 8 1 Is the dust cloud around lambda Orionis a ring or a shell, or both? LEE D., SEON K.-I. and JO Y.-S.
2015ApJ...808...68H 40           X         1 19 25 A simple calculation in service of constraining the rate of FU Orionis outburst events from photometric monitoring surveys. HILLENBRAND L.A. and FINDEISEN K.P.
2015AJ....150...60L 40           X         1 46 3 CO core candidates in the Gemini molecular cloud. LI Y., XU Y., YANG J., et al.
2015ApJ...808..111O 2065     A D S   X C       51 44 29 Nested shells reveal the rejuvenation of the Orion-Eridanus superbubble. OCHSENDORF B.B., BROWN A.G.A., BALLY J., et al.
2015AJ....150..100K viz 199       S   X         4 45 10 Spectroscopic assessment of WISE-based young stellar object selection near λ and σ Orionis. KOENIG X., HILLENBRAND L.A., PADGETT D.L., et al.
2016A&A...588A..43J 82             C       1 7 15 Mantle formation, coagulation, and the origin of cloud/core shine. JONES A.P., KOHLER M., YSARD N., et al.
2016ApJ...824..141G 120           X C       2 10 4 L1599B: cloud envelope and C+ emission in a region of moderately enhanced radiation field. GOLDSMITH P.F., PINEDA J.L., LANGER W.D., et al.
2016A&A...594A..25P 460       D     X C       11 69 181 Planck 2015 results. XXV. Diffuse low-frequency Galactic foregrounds. PLANCK COLLABORATION, ADE P.A.R., AGHANIM N., et al.
2017A&A...597A..17H 65     A     X         2 69 5 A search for pre- and proto-brown dwarfs in the dark cloud Barnard 30 with ALMA. HUELAMO N., DE GREGORIO-MONSALVO I., PALAU A., et al.
2017MNRAS.468.1198B 284           X C F     5 83 10 A stellar census of the nearby, young 32 Orionis group. BELL C.P.M., MURPHY S.J. and MAMAJEK E.E.
2018ApJS..234...28L 83           X         2 26 49 The TOP-SCOPE survey of Planck Galactic cold clumps: survey overview and results of an exemplar source, PGCC G26.53+0.17. LIU T., KIM K.-T., JUVELA M., et al.
2018MNRAS.474.5406D 82           X         2 9 6 Probing the origin of UX Ori-type variability in the YSO binary CO Ori with VLTI/GRAVITY. DAVIES C.L., KREPLIN A., KLUSKA J., et al.
2018MNRAS.474.1176J 85           X         2 5 15 Explaining the luminosity spread in young clusters: proto and pre-main sequence stellar evolution in a molecular cloud environment. JENSEN S.S. and HAUGBOLLE T.
2018ApJ...861..145C 41           X         1 101 84 A near-infrared spectroscopic survey of FU Orionis objects. CONNELLEY M.S. and REIPURTH B.
2018ApJS..236...27C viz 947       S   X C       21 1323 6 The APOGEE-2 survey of the Orion Star-forming Complex. I. Target selection and validation with early observations. COTTLE J., COVEY K.R., SUAREZ G., et al.
2018ApJS..236...49Z viz 41           X         1 79 7 The TOP-SCOPE survey of PGCCs: PMO and SCUBA-2 observations of 64 PGCCs in the second Galactic quadrant. ZHANG C.-P., LIU T., YUAN J., et al.
2018ApJS..236...51Y viz 4239 T   A D S   X C       101 210 23 Planck Cold Clumps in the λ Orionis complex. II. Environmental effects on core formation. YI H.-W., LEE J.-E., LIU T., et al.
2019MNRAS.488.3406Z 627           X C       14 20 ~ Flipping-up the field: gravitational feedback as a mechanism for young clusters dispersal. ZAMORA-AVILES M., BALLESTEROS-PAREDES J., HERNANDEZ J., et al.
2019ApJ...883..117K 59       D     X         2 34 ~ A comparison of the X-ray properties of FU Ori-type stars to generic young stellar objects. KUHN M.A. and HILLENBRAND L.A.
2020MNRAS.492.2446P viz 43           X         1 725 ~ Large-scale star formation in Auriga region. PANDEY A.K., SHARMA S., KOBAYASHI N., et al.
2020A&A...633A..51Z viz 18       D               1 108 127 A compendium of distances to molecular clouds in the Star Formation Handbook. ZUCKER C., SPEAGLE J.S., SCHLAFLY E.F., et al.
2020AJ....159..182O viz 44           X         1 18 31 APOGEE Net: improving the derived spectral parameters for young stars through deep learning. OLNEY R., KOUNKEL M., SCHILLINGER C., et al.
2020A&A...635A..34K viz 43           X         1 1871 70 Properties of the dense core population in Orion B as seen by the Herschel Gould Belt survey. KONYVES V., ANDRE P., ARZOUMANIAN D., et al.
2020MNRAS.495L..86L 43           X         1 19 11 Most stars (and planets?) are born in intense radiation fields. LEE E.J. and HOPKINS P.F.
2020ApJ...898..107H 213     A D     X         6 45 15 ALMA survey of Orion Planck Galactic Cold Clumps (ALMASOP). I. Detection of new hot corinos with the ACA. HSU S.-Y., LIU S.-Y., LIU T., et al.
2020A&A...639A.110A 255           X C       5 41 ~ Large-scale [C II] 158 µm emission from the Orion-Eridanus superbubble. ABDULLAH A. and TIELENS A.G.G.M.
2020A&A...640A.123B 43           X         1 17 ~ The GAPS Programme at TNG. XXV. Stellar atmospheric parameters and chemical composition through GIARPS optical and near-infrared spectra. BARATELLA M., D'ORAZI V., BIAZZO K., et al.
2020MNRAS.499..668G 128           X         3 6 ~ The effect of photoionizing feedback on the shaping of hierarchically-forming stellar clusters. GONZALEZ-SAMANIEGO A. and VAZQUEZ-SEMADENI E.
2020Sci...369.1233K 46           X         1 19 71 A triple-star system with a misaligned and warped circumstellar disk shaped by disk tearing. KRAUS S., KREPLIN A., YOUNG A.K., et al.
2021MNRAS.501.5938R 157     A     X         4 29 ~ HH 175: a giant Herbig-Haro flow emanating from a multiple protostar. REIPURTH B. and FRIBERG P.
2021A&A...646A..10S 44           X         1 77 1 ALMA observations of the early stages of substellar formation in the Lupus 1 and 3 molecular clouds. SANTAMARIA-MIRANDA A., DE GREGORIO-MONSALVO I., PLUNKETT A.L., et al.
2021MNRAS.502..589C 44           X         1 16 ~ Resolved spectral variations of the centimetre-wavelength continuum from the ρ Oph W photodissociation region. CASASSUS S., VIDAL M., ARCE-TORD C., et al.
2021MNRAS.502.3200J 131           X         3 6 ~ Construction of a far-ultraviolet all-sky map from an incomplete survey: application of a deep learning algorithm. JO Y.-S., CHOI Y.-J., KIM M.-G., et al.
2020PASJ...72...50V 43           X         1 128 62 The First VERA Astrometry Catalog. VERA COLLABORATION, HIROTA T., NAGAYAMA T., et al.
2021ApJ...910...51K 53           X         1 2 19 Radiation hydrodynamics simulations of protoplanetary disks: stellar mass dependence of the disk photoevaporation rate. KOMAKI A., NAKATANI R. and YOSHIDA N.
2021ApJ...917...21S viz 44           X         1 22 19 Evidence for radial expansion at the core of the Orion Complex with Gaia EDR3. SWIGGUM C., D'ONGHIA E., ALVES J., et al.
2021MNRAS.506.4232K 174           X C       3 16 9 The GALAH survey: Chemical homogeneity of the Orion complex. KOS J., BLAND-HAWTHORN J., BUDER S., et al.
2021A&A...653A..88A 44           X         1 56 8 Characterizing the morphology of the debris disk around the low-mass star GSC 07396-00759. ADAM C., OLOFSSON J., VAN HOLSTEIN R.G., et al.
2021ApJS..256...25T viz 148       D     X C       3 18 5 Molecular cloud cores with high deuterium fractions: Nobeyama mapping survey. TATEMATSU K., KIM G., LIU T., et al.
2021MNRAS.508.5279E 261           X C       5 11 4 The statistical properties of protostellar discs and their dependence on metallicity. ELSENDER D. and BATE M.R.
2022MNRAS.509.3218K 49           X         1 2 9 Supernova induced processing of interstellar dust: impact of interstellar medium gas density and gas turbulence. KIRCHSCHLAGER F., MATTSSON L. and GENT F.A.
2022MNRAS.510.1528V 90               F     2 19 ~ Monte Carlo simulations of evolving rotational distributions of low-mass stars in young open clusters. Testing the influence of initial conditions. VASCONCELOS M.J., BOUVIER J., GALLET F., et al.
2022A&A...661A..53V viz 197       D     X C       4 905 11 Survey of Orion Disks with ALMA (SODA). I. Cloud-level demographics of 873 protoplanetary disks. VAN TERWISGA S.E., HACAR A., VAN DISHOECK E.F., et al.
2022ApJ...931...33T 90           X         2 62 1 Nobeyama Survey of Inward Motions toward Cores in Orion Identified by SCUBA-2. TATEMATSU K., YEH Y.-T., HIRANO N., et al.
2022MNRAS.515L..67S 134           X         3 54 2 Investigation of rocket effect in bright-rimmed clouds using Gaia EDR3. SAHA P., MAHESWAR G., OJHA D.K., et al.
2022ApJ...940...59C 968 T   A     X C       20 2 1 Tracing PAH Emission in λ-Orionis Using COBE/DIRBE Data. CHUSS D.T., HENSLEY B.S., KOGUT A.J., et al.
2023AJ....165...51R viz 392       D     X C       8 65 3 Stellar Properties for a Comprehensive Collection of Star-forming Regions in the SDSS APOGEE-2 Survey. ROMAN-ZUNIGA C.G., KOUNKEL M., HERNANDEZ J., et al.
2023ApJS..265...39P 47           X         1 7 2 Rubin LSST Observing Strategies to Maximize Volume and Uniformity Coverage of Star-forming Regions in the Galactic Plane. PRISINZANO L., BONITO R., MAZZI A., et al.
2023A&A...675A..15H 47           X         1 10 ~ BEYONDPLANCK XV. Limits on large-scale polarized anomalous microwave emission from Planck LFI and WMAP. HERMAN D., HENSLEY B., ANDERSEN K.J., et al.
2024ApJ...961..123H 50           X         1 30 ~ ALMA Survey of Orion Planck Galactic Cold Clumps (ALMASOP): Discovery of an Extremely Dense and Compact Object Embedded in the Prestellar Core G208.68-19.92-N2. HIRANO N., SAHU D., LIU S.-Y., et al.

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