4.6 Article

THE CLOSEST KNOWN FLYBY OF A STAR TO THE SOLAR SYSTEM

Journal

ASTROPHYSICAL JOURNAL LETTERS
Volume 800, Issue 1, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/2041-8205/800/1/L17

Keywords

Galaxy: kinematics and dynamics; Oort Cloud; stars: individual (WISE J072003.20-084651.2, Scholz's star HIP 85605)

Funding

  1. Direct For Mathematical & Physical Scien
  2. Division Of Astronomical Sciences [1313029] Funding Source: National Science Foundation

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Passing stars can perturb the Oort Cloud, triggering comet showers and potentially extinction events on Earth. We combine velocity measurements for the recently discovered, nearby, low- mass binary system WISE J072003.20084651.2 ( Scholz's star) to calculate its past trajectory. Integrating the Galactic orbits of this 0.15 Me binary system and the Sun, we find that the binary passed within only 52+ 23 - 14 kAU ( 0.25+ 0.11 - 0.07 pc) of the Sun 70+ 15 - 10 kya ( 1s uncertainties), i. e., within the outer Oort Cloud. This is the closest known encounter of a star to our solar system with a well- constrained distance and velocity. Previous work suggests that flybys within 0.25 pc occur infrequently ( 0.1 Myr- 1). We show that given the low mass and high velocity of the binary system, the encounter was dynamically weak. Using the best available astrometry, our simulations suggest that the probability that the star penetrated the outer Oort Cloud is 98%, but the probability of penetrating the dynamically active inner Oort Cloud (< 20 kAU) is 10- 4. While the flyby of this system likely caused negligible impact on the flux of longperiod comets, the recent discovery of this binary highlights that dynamically important Oort Cloud perturbers may be lurking among nearby stars.

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