To overcome the high optical extinction, near-infrared observations are needed for probing the microlensing events toward the Galactic center. The 2015-2019 UKIRT microlensing survey toward the Galactic center is the first dedicated precursor near-infrared (NIR) survey for the Nancy Grace Roman Space Telescope. We here analyze the online data from the UKIRT microlensing survey, reaching $l=b=0^\circ$. Using the event-finder algorithm of KMTNet with the $\Delta \chi^2$ threshold of 250, we find 522 clear events, 436 possible events, and 27 possible anomalous events. We fit a point-source point-lens (PSPL) model to all the clear events and derive the PSPL parameters with uncertainties using a Markov chain Monte Carlo method. Assuming perfect ...
6 pages, 2 figures, accepted MNRAS LettersWe extend predictive microlensing event searches using the...
Microlensing events have historically been discovered throughout the Galactic bulge and plane by sur...
Funding: UK STFC grant ST/R000824/1 (KH).Discussing the particularly long gravitational microlensing...
Optical microlensing surveys are restricted from detecting events near the Galactic plane and center...
Microlensing is a powerful tool that can be used to search for cold exoplanets in the disk and bulge...
Indexación: Scopus.We search for microlensing events in the highly reddened areas surrounding the Ga...
© 2020. The American Astronomical Society. All rights reserved.We search for microlensing events in ...
Context. Ground-based optical microlensing surveys have provided tantalising, if inconclusive, evide...
We compute a microlensing map for the Galactic bar. The predicted event rate and event duration dist...
Gravitational microlensing is an astronomical phenomenon where the gravity of a foreground massive o...
Up to date, only 13 firmly established triple microlensing events have been discovered, so the occur...
Gravitational microlensing is a powerful method to search for and characterize exoplanets, and it wa...
Gravitational microlensing is a powerful method for discovering Isolated Stellar-Mass Black Holes(IS...
Searches for gravitational microlensing events are traditionally concentrated on the central regions...
© 2020. The American Astronomical Society. All rights reserved. Microlensing surveys have discovered...
6 pages, 2 figures, accepted MNRAS LettersWe extend predictive microlensing event searches using the...
Microlensing events have historically been discovered throughout the Galactic bulge and plane by sur...
Funding: UK STFC grant ST/R000824/1 (KH).Discussing the particularly long gravitational microlensing...
Optical microlensing surveys are restricted from detecting events near the Galactic plane and center...
Microlensing is a powerful tool that can be used to search for cold exoplanets in the disk and bulge...
Indexación: Scopus.We search for microlensing events in the highly reddened areas surrounding the Ga...
© 2020. The American Astronomical Society. All rights reserved.We search for microlensing events in ...
Context. Ground-based optical microlensing surveys have provided tantalising, if inconclusive, evide...
We compute a microlensing map for the Galactic bar. The predicted event rate and event duration dist...
Gravitational microlensing is an astronomical phenomenon where the gravity of a foreground massive o...
Up to date, only 13 firmly established triple microlensing events have been discovered, so the occur...
Gravitational microlensing is a powerful method to search for and characterize exoplanets, and it wa...
Gravitational microlensing is a powerful method for discovering Isolated Stellar-Mass Black Holes(IS...
Searches for gravitational microlensing events are traditionally concentrated on the central regions...
© 2020. The American Astronomical Society. All rights reserved. Microlensing surveys have discovered...
6 pages, 2 figures, accepted MNRAS LettersWe extend predictive microlensing event searches using the...
Microlensing events have historically been discovered throughout the Galactic bulge and plane by sur...
Funding: UK STFC grant ST/R000824/1 (KH).Discussing the particularly long gravitational microlensing...