MICROLENSING SIGNATURE OF A WHITE DWARF POPULATION IN THE GALACTIC HALO
M. Hafizi, F. De Paolis, G. Ingrosso, Achille Nucita
Abstract
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M. Hafizi, F. De Paolis, G. Ingrosso, Achille Nucita
Abstract
Open-access reader
Microlensing and pixel-lensing surveys play a fundamental role in the searches for galactic dark matter and in the study of the galactic structure. Recent observations suggest the presence of a population of old white dwarfs with high proper motion, probably in the galactic halo, with local mass density in the range 1.3×10-4-4.4×10-3 M⊙ pc -3, in addition to the standard galactic stellar disk and dark halo components. Investigation of the signatures on microlensing results towards the LMC of these different lens populations, with particular emphasis to white dwarfs, is the main purpose of the present paper. This is done by evaluating optical depth and microlensing rate of the various lens populations and then calculating through a Monte Carlo program, the probability that a lens which has caused a microlensing event of duration t E belongs to a certain galactic population. Data obtained by the MACHO Collaboration allow us to set an upper bound of 1.6×10-3 M⊙ pc -3 to the local mass density of white dwarfs distributed in spheroidal models, while for white dwarfs in disk models all values for the local mass density are in agreement with observational results.
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Microlensing and pixel-lensing surveys play a fundamental role in the searches for galactic dark matter and in the study of the galactic structure. Recent observations suggest the presence of a population of old white dwarfs with high proper motion, probably in the galactic halo, with local mass density in the range 1.3×10-4-4.4×10-3 M⊙ pc -3, in addition to the standard galactic stellar disk and dark halo components. Investigation of the signatures on microlensing results towards the LMC of these different lens populations, with particular emphasis to white dwarfs, is the main purpose of the present paper. This is done by evaluating optical depth and microlensing rate of the various lens populations and then calculating through a Monte Carlo program, the probability that a lens which has caused a microlensing event of duration t E belongs to a certain galactic population. Data obtained by the MACHO Collaboration allow us to set an upper bound of 1.6×10-3 M⊙ pc -3 to the local mass density of white dwarfs distributed in spheroidal models, while for white dwarfs in disk models all values for the local mass density are in agreement with observational results.
Key concepts: Gravitational microlensing, Physics, Astrophysics, White dwarf, Galactic halo, Massive compact halo object, Dark matter, Astronomy