We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, orbiting a K- or M-dwarf star in the inner Galactic disk or Galactic bulge. The high-cadence observations of the MOA-II survey discovered this microlensing event and enabled its identification as a high-magnification event approximately 24 hr prior to peak magnification. As a result, the planetary signal at the peak of this light curve was observed by 20 different telescopes, which is the largest number of telescopes to contribute to a planetary discovery to date. The microlensing model for this event indicates a planet-star mass ratio of q = (3.95 ± 0.02) × 10^(–4) and a separation of d = 0.97537 ± 0.00007 in units of the Einstein radius. A ...
We present an analysis of the anomalous microlensing event, MOA-2010-BLG-073, announced by the Micro...
We report the discovery of OGLE-2016-BLG-1190Lb, which is likely to be the first Spitzermicrolensing...
We report the discovery of a planet – OGLE-2014-BLG-0676Lb– via gravitational microlensing. Observat...
We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, ...
We present the first measurement of the planet frequency beyond the "snow line," for the planet-to-s...
A.F. was supported by the Astrobiology Project of the Center for Novel Science Initiatives (CNSI), N...
We report the discovery and analysis of a sub-Saturn-mass planet in the microlensing event OGLE-2018...
Microlensing detections of cool planets are important for the construction of an unbiased sample to ...
We report the discovery of a microlensing exoplanet OGLE-2012-BLG-0563Lb with the planet–star mass r...
Microlensing detections of cool planets are important for the construction of an unbiased sample to ...
D.P.B. was supported by grants NASA-NNX12AF54G, JPL-RSA 1453175 and NSF AST-1211875. This MOA projec...
Work by WZ, YKJ, and AG were supported by AST-1516842 from the US NSF. WZ, IGS, and AG were supporte...
Aims. We report the discovery of a planet with a high planet-to-star mass ratio in the microlensing ...
We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, ...
We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, ...
We present an analysis of the anomalous microlensing event, MOA-2010-BLG-073, announced by the Micro...
We report the discovery of OGLE-2016-BLG-1190Lb, which is likely to be the first Spitzermicrolensing...
We report the discovery of a planet – OGLE-2014-BLG-0676Lb– via gravitational microlensing. Observat...
We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, ...
We present the first measurement of the planet frequency beyond the "snow line," for the planet-to-s...
A.F. was supported by the Astrobiology Project of the Center for Novel Science Initiatives (CNSI), N...
We report the discovery and analysis of a sub-Saturn-mass planet in the microlensing event OGLE-2018...
Microlensing detections of cool planets are important for the construction of an unbiased sample to ...
We report the discovery of a microlensing exoplanet OGLE-2012-BLG-0563Lb with the planet–star mass r...
Microlensing detections of cool planets are important for the construction of an unbiased sample to ...
D.P.B. was supported by grants NASA-NNX12AF54G, JPL-RSA 1453175 and NSF AST-1211875. This MOA projec...
Work by WZ, YKJ, and AG were supported by AST-1516842 from the US NSF. WZ, IGS, and AG were supporte...
Aims. We report the discovery of a planet with a high planet-to-star mass ratio in the microlensing ...
We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, ...
We report the gravitational microlensing discovery of a sub-Saturn mass planet, MOA-2009-BLG-319Lb, ...
We present an analysis of the anomalous microlensing event, MOA-2010-BLG-073, announced by the Micro...
We report the discovery of OGLE-2016-BLG-1190Lb, which is likely to be the first Spitzermicrolensing...
We report the discovery of a planet – OGLE-2014-BLG-0676Lb– via gravitational microlensing. Observat...