scholarly journals OGLE‐2003‐BLG‐262: Finite‐Source Effects from a Point‐Mass Lens

2004 ◽  
Vol 603 (1) ◽  
pp. 139-151 ◽  
Author(s):  
Jaiyul Yoo ◽  
D. L. DePoy ◽  
A. Gal‐Yam ◽  
B. S. Gaudi ◽  
A. Gould ◽  
...  
2015 ◽  
Vol 2015 ◽  
pp. 1-8 ◽  
Author(s):  
Lindita Hamolli ◽  
Mimoza Hafizi ◽  
Francesco De Paolis ◽  
Achille A. Nucita

In recent years free-floating planets (FFPs) have drawn a great interest among astrophysicists. Gravitational microlensing is a unique and exclusive method for their investigation which may allow obtaining precious information about their mass and spatial distribution. The planned Euclid space-based observatory will be able to detect a substantial number of microlensing events caused by FFPs towards the Galactic bulge. Making use of a synthetic population algorithm, we investigate the possibility of detecting finite source effects in simulated microlensing events due to FFPs. We find a significant efficiency for finite source effect detection that turns out to be between 20% and 40% for a FFP power law mass function index in the range [0.9, 1.6]. For many of such events it will also be possible to measure the angular Einstein radius and therefore constrain the lens physical parameters. These kinds of observations will also offer a unique possibility to investigate the photosphere and atmosphere of Galactic bulge stars.


Author(s):  
Adam R. H. Stevens ◽  
Michael D. Albrow

AbstractFinite-source effects of gravitationally microlensed stars have been well discussed in the literature, but the role that stellar rotation plays has been neglected. A differential magnification map applied to a differentially Doppler-shifted surface alters the profiles of absorption lines, compromising their ordinarily symmetric nature. Herein, we assess the degree to which this finite-source effect of differential limb magnification (DLM), in combination with stellar rotation, alters spectroscopically derived stellar properties. To achieve this, we simulated a grid of high-magnification microlensing events using synthetic spectra. Our analysis shows that rotation of the source generates differences in the measured equivalent widths of absorption lines supplementary to DLM alone, but only of the order of a few per cent. Using the wings of Hα from the same simulated data, we confirmed the result of Johnson and colleagues that DLM alters measurements of effective temperature by ≲100 K for dwarf stars, while showing rotation to bear no additional effect.


2009 ◽  
Vol 695 (1) ◽  
pp. 200-207 ◽  
Author(s):  
C.-H. Lee ◽  
A. Riffeser ◽  
S. Seitz ◽  
R. Bender
Keyword(s):  

2018 ◽  
Vol 481 (2) ◽  
pp. 2189-2204 ◽  
Author(s):  
Vanessa P de Freitas ◽  
Martin Makler ◽  
Habib S Dúmet-Montoya

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