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http://dx.doi.org/10.5303/PKAS.2015.30.2.235

DETECTION LEVEL ENHANCEMENTS OF GRAVITATIONAL MICROLENSING EVENTS FROM LIGHT CURVES: THE SIMULATIONS  

IBRAHIM, ICHSAN (Astronomy Department, Institute Technology of Bandung)
MALASAN, HAKIM L. (Astronomy Department, Institute Technology of Bandung)
DJAMAL, MITRA (Physics Department Institute Technology of Bandung)
KUNJAYA, CHATIEF (Astronomy Department, Institute Technology of Bandung)
JELANI, ANTON TIMUR (Astronomy Department, Institute Technology of Bandung)
PUTRI, GERHANA PUANNANDRA (Astronomy Department, Institute Technology of Bandung)
Publication Information
Publications of The Korean Astronomical Society / v.30, no.2, 2015 , pp. 235-236 More about this Journal
Abstract
Microlensing can be seen as a version of strong gravitation lensing where the separation angle of the image formed by light deflection by a massive object is too small to be seen by a ground based optical telescope. As a result, what can be observed is the change in light intensity as function of time; the light curve. Conventionally, the intensity of the source is expressed in magnitudes, which uses a logarithmic function of the apparent flux, known as the Pogson formulae. In this work, we compare the magnitudes from the Pogson formulae with magnitudes from the Asinh formulae (Lupton et al. 1999). We found for small fluxes, Asinh magnitudes give smaller deviations, about 0.01 magnitudes smalller than Pogson magnitudes. This result is expected to give significant improvement in detection level of microlensing light curves.
Keywords
gravitational lensing: micro; methods: data analysis;
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1 Bessell, M. S., Castelli, F., & Plez, B., 1998, Model Atmo-spheres Broad Band Colors, Bolometric Corrections and Temperature Calibrations for O-M Stars, A&A, 333, 231
2 Lupton, R. H., Gunn, J. E., & Szalay, A. S., 1999, A Modi-fied Magnitude System that Produces Well-Behaved Magnitudes, Colors, and Errors Even For Low Signal-to-Noise Ratio Measurements, AJ, 118, 1406   DOI   ScienceOn
3 Udalski, A., Szymanski, M., Kauzny, J., Kubiak, M., Mateo, M., Krzeminski, W., & Paczynski, B., 1994, The Optical Gravitational Lensing Experiment. The EarlyWarning System: Real Time Microlensing, AcA, 44, 227U