English

The NANOGrav 15-year Data Set: Search for Gravitational Scattering of Pulsars by Free-Floating Objects in Interstellar Space

High Energy Astrophysical Phenomena 2025-12-09 v2

Abstract

Free-floating objects (FFOs) in interstellar space-rogue planets, brown dwarfs, and large asteroids that are not gravitationally bound to any star-are expected to be ubiquitous throughout the Milky Way. Recent microlensing surveys have discovered several free-floating planets that are not bound to any known stellar systems. Additionally, three interstellar objects, namely 1I/'Oumuamua, 2I/Borisov, and 3I/ATLAS, have been detected passing through our solar system on hyperbolic trajectories. In this work, we search for FFOs on hyperbolic orbits that pass near millisecond pulsars (MSPs), where their gravitational influence can induce detectable perturbations in pulse arrival times. Using the NANOGrav 15-year narrowband dataset, which contains high-precision timing data for 68 MSPs, we conduct a search for such hyperbolic scattering events between FFOs and pulsars. Although no statistically significant events were detected, this non-detection enables us to place upper limits on the number density of FFOs as a function of their mass within our local region of the Galaxy. For example, the upper limit on the number density for Jupiter-mass FFOs (102.5103.5 M\sim 10^{-2.5} - 10^{-3.5}~M_{\odot}) obtained from different pulsars ranges from 5.25×106 pc35.25\times10^{6}~\text{pc}^{-3} to 5.37×109 pc35.37\times10^{9}~\text{pc}^{-3}, while the upper limit calculated by combining results from all the pulsars is 6.03×105 pc36.03\times10^{5}~\text{pc}^{-3}. These results represent the first constraints on FFO population derived from pulsar timing data.

Keywords

Cite

@article{arxiv.2507.19475,
  title  = {The NANOGrav 15-year Data Set: Search for Gravitational Scattering of Pulsars by Free-Floating Objects in Interstellar Space},
  author = {Lankeswar Dey and Ross J. Jennings and Jackson D. Taylor and Joseph Glaser and Maura A. McLaughlin and Gabriella Agazie and Akash Anumarlapudi and Anne M. Archibald and Zaven Arzoumanian and Paul T. Baker and Paul R. Brook and H. Thankful Cromartie and Kathryn Crowter and Megan E. DeCesar and Paul B. Demorest and Timothy Dolch and Elizabeth C. Ferrara and William Fiore and Emmanuel Fonseca and Gabriel E. Freedman and Nate Garver-Daniels and Peter A. Gentile and Deborah C. Good and Jeffrey S. Hazboun and Megan L. Jones and David L. Kaplan and Matthew Kerr and Michael T. Lam and T. Joseph W. Lazio and Duncan R. Lorimer and Jing Luo and Ryan S. Lynch and Alexander McEwen and Natasha McMann and Bradley W. Meyers and Cherry Ng and David J. Nice and Timothy T. Pennucci and Benetge B. P. Perera and Nihan S. Pol and Henri A. Radovan and Scott M. Ransom and Paul S. Ray and Ann Schmiedekamp and Carl Schmiedekamp and Brent J. Shapiro-Albert and Ingrid H. Stairs and Kevin Stovall and Abhimanyu Susobhanan and Joseph K. Swiggum and Haley M. Wahl},
  journal= {arXiv preprint arXiv:2507.19475},
  year   = {2025}
}

Comments

24 pages, 3 figures, 5 tables, Accepted for publication in ApJ