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GCIRS 13E3 , the SIMBAD biblio (34 results) | C.D.S. - SIMBAD4 rel 1.8 - 2024.07.27CEST06:01:06 |
Bibcode/DOI | Score |
in Title|Abstract| Keywords |
in a table | in teXt, Caption, ... | Nb occurence | Nb objects in ref |
Citations (from ADS) |
Title | First 3 Authors |
---|---|---|---|---|---|---|---|---|---|
2001A&A...366..466P | 46 | 94 | New results on the helium stars in the Galactic Center using BEAR spectro-imagery. | PAUMARD T., MAILLARD J.P., MORRIS M., et al. | |||||
2002A&A...383..568C | 9 | 9 | The Galactic Centre source IRS 13E: A post-LBV Wolf-Rayet colliding wind binary? | COKER R.F., PITTARD J.M. and KASTNER J.H. | |||||
2003ApJ...591..891B | 6 | 35 | 714 | Chandra X-ray spectroscopic imaging of Sagittarius A* and the central parsec of the galaxy. | BAGANOFF F.K., MAEDA Y., MORRIS M., et al. | ||||
2003ANS...324a.263M | 12 | ~ | The Galactic Center source IRS 13E: a star cluster. | MAILLARD J.-P., PAUMARD T., STOLOVY S., et al. | |||||
2003ANS...324a.303P | 22 | ~ | New results on the Galactic Center helium stars. | PAUMARD T., MAILLARD J.-P. and STOLOVY S. | |||||
2004A&A...423..155M | 1 | O | 30 | 117 | The nature of the Galactic Center source IRS 13 revealed by high spatial resolution in the infrared. | MAILLARD J.P., PAUMARD T., STOLOVY S.R., et al. | |||
2005A&A...443..163M | 38 | 23 | VLT L-band mapping of the Galactic center IRS 3-IRS 13 region. Evidence for new Wolf-Rayet type stars. | MOULTAKA J., ECKART A., SCHOEDEL R., et al. | |||||
2005ApJ...625L.111S | 1 | 13 | 51 | A black hole in the Galactic Center complex IRS 13E. | SCHODEL R., ECKART A., ISERLOHE C., et al. | ||||
2006ApJ...641..319P | 3 | 20 | 127 | The ecology of star clusters and intermediate-mass black holes in the Galactic Bulge. | PORTEGIES ZWART S.F., BAUMGARDT H., McMILLAN S.L.W., et al. | ||||
2006ApJ...643.1011P ![]() |
2 | 119 | 600 | The two young star disks in the central parsec of the Galaxy: properties, dynamics, and formation. | PAUMARD T., GENZEL R., MARTINS F., et al. | ||||
2006MNRAS.370..219M | 17 | 27 | The pattern of accretion flow on to Sgr A*. | MOSCIBRODZKA M., DAS T.K. and CZERNY B. | |||||
2009ApJ...699..186Z ![]() |
92 | D | F | 1 | 43 | 104 | Dynamics of ionized gas at the galactic center: very large array observations of the three-dimensional velocity field and location of the ionized streams in Sagittarius A West. | ZHAO J.-H., MORRIS M.R., GOSS W.M., et al. | |
2009A&A...502...91S ![]() |
15 | D | 1 | 345 | 213 | The nuclear star cluster of the Milky Way: proper motions and mass. | SCHOEDEL R., MERRITT D. and ECKART A. | ||
2010ApJ...716..504S | 44 | X | 1 | 5 | 65 | Inflow-outflow model with conduction and self-consistent feeding for Sgr A*. | SHCHERBAKOV R.V. and BAGANOFF F.K. | ||
2010ApJ...721..395F | 496 | X C | 12 | 15 | 20 | GC-IRS13E–A puzzling association of three early-type stars. | FRITZ T.K., GILLESSEN S., DODDS-EDEN K., et al. | ||
2010RvMP...82.3121G | 119 | X | 3 | 73 | 874 | The Galactic Center massive black hole and nuclear star cluster. | GENZEL R., EISENHAUER F. and GILLESSEN S. | ||
2012MNRAS.425.2413O | 40 | X | 1 | 3 | 8 | Low angular momentum flow model for Sgr A*. | OKUDA T. and MOLTENI D. | ||
2013A&A...551A..18E | 211 | D | X C | 5 | 43 | 63 | Near-infrared proper motions and spectroscopy of infrared excess sources at the Galactic center. | ECKART A., MUZIC K., YAZICI S., et al. | |
2014MNRAS.441.2354O | 39 | X | 1 | 4 | 6 | Low angular momentum flow model II for Sgr A*. | OKUDA T. | ||
2014ApJ...792L...1Y | 55 | D | X | 2 | 63 | 9 | The discovery of radio stars within 10'' of Sgr A* at 7 mm. | YUSEF-ZADEH F., ROBERTS D.A., BUSHOUSE H., et al. | |
2015MNRAS.447.1565S | 41 | X | 1 | 8 | 16 | Oscillating shocks in the low angular momentum flows as a source of variability of accreting black holes. | SUKOVA P. and JANIUK A. | ||
2017ApJ...850L...5T | 1681 | D | S X | 41 | 15 | 14 | The second Galactic Center black hole? A possible detection of ionized gas orbiting around an IMBH embedded in the Galactic Center IRS13E complex. | TSUBOI M., KITAMURA Y., TSUTSUMI T., et al. | |
2019PASJ...71...49O | 42 | X | 1 | 3 | ~ | A possible model for the long-term flares of Sgr A*. | OKUDA T., SINGH C.B., DAS S., et al. | ||
2020MNRAS.492.2481W | 1022 | X C | 23 | 12 | ~ | Colliding winds in and around the stellar group IRS 13E at the galactic centre. | WANG Q.D., LI J., RUSSELL C.M.P., et al. | ||
2019PASJ...71..105T | 1839 | T A | D | X C | 43 | 12 | ~ |
Rotating ionized gas ring around the Galactic center IRS13E3. |
TSUBOI M., KITAMURA Y., TSUTSUMI T., et al. |
2020ApJ...897..135Z | 1847 | D | X C | 43 | 12 | ~ | Galactic Center IRS 13E: colliding stellar winds or an intermediate-mass black hole? | ZHU Z., LI Z., CIURLO A., et al. | |
2020PASJ...72L...5T | 621 | T A | X C | 13 | 10 | ~ |
How far actually is the Galactic Center IRS 13E3 from Sagittarius A*? |
TSUBOI M., KITAMURA T., MIYAWAKI R., et al. | |
2022ApJ...927L...6Z | 90 | C | 1 | 52 | 5 | Detection of a Dense Group of Hypercompact Radio Sources in the Central Parsec of the Galaxy. | ZHAO J.-H., MORRIS M.R. and GOSS W.M. | ||
2022PASJ...74..738T | 735 | D | X C | 16 | 45 | 3 | ALMA astrometry of the objects within 0.5 pc of Sagittarius A*. | TSUBOI M., TSUTSUMI T., MIYAZAKI A., et al. | |
2023ApJ...944..231P | 47 | X | 1 | 27 | 1 | X3: A High-mass Young Stellar Object Close to the Supermassive Black Hole Sgr A*. | PEISSKER F., ZAJACEK M., SABHA N.B., et al. | ||
2023ApJ...949...18J | 532 | D | X C | 11 | 183 | ~ | Stellar Populations in the Central 0.5 pc of Our Galaxy. III. The Dynamical Substructures. | JIA S., XU N., LU J.R., et al. | |
2023A&A...678A.141O | 93 | X | 2 | 4 | ~ | General relativistic hydrodynamic simulations of perturbed transonic accretion. | OLIVARES H.R., MOSCIBRODZKA M.A. and PORTH O. | ||
2023ApJ...956...70P | 392 | D | X C | 8 | 38 | ~ | The Evaporating Massive Embedded Stellar Cluster IRS 13 Close to Sgr A*. I. Detection of a Rich Population of Dusty Objects in the IRS 13 Cluster. | PEISSKER F., ZAJACEK M., THOMKINS L., et al. | |
2024AJ....167...41D | 300 | X | 6 | 69 | ~ | High-resolution, Mid-infrared Color Temperature Mapping of the Central 10″ of the Galaxy. | DINH C.K., CIURLO A., MORRIS M.R., et al. |