arXiv · astro-ph/0311548
Resolution of the MACHO-LMC-5 Puzzle: The Jerk-Parallax Microlens Degeneracy
Abstract
By extending the constant-acceleration analysis of Smith, Mao, & Paczynski to include jerk, I show that microlens parallax measurements are subject to a four-fold discrete degeneracy. The new degeneracy is characterized by a projected velocity \tilde v_j = -(3/4)\cscβ_\ec(\cos^2ψ\sin^2β_\ec+\sin^2ψ)^{3/2}v_earth, where β_\ec is the ecliptic latitude, ψis the phase of the Earth's orbit relative to opposition at the time of the event maximum, and v_earth=30 km/s is the speed of the Earth. The degeneracy becomes important when the lens projected velocity \tilde v is of order \tilde v_j. For events toward the Large Magellanic Cloud, \tilde v_j\simeq (3/4)v_earth, so this degeneracy is important primarily for lenses in the Milky Way disk. In particular, it solves the puzzle of MACHO-LMC-5, whose microlens parallax measurement had yielded mass and distance determinations for the lens that were inconsistent with photometric estimates. Toward the Galactic bulge, \tilde v_j ranges from about 0.2 km/s at the solstice to about 200 km/s at the equinoxes, so the effect of the degeneracy depends strongly on the peak time of the event. The degeneracy applies mainly to events with Einstein timescales, t_E < yr/2pi.
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Andrew Gould. 2004-03-14. Resolution of the MACHO-LMC-5 Puzzle: The Jerk-Parallax Microlens Degeneracy. https://doi.org/10.1086/382782
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