Published November 2018 | Version Submitted
Journal Article Open

Astrophysics with New Horizons: Making the Most of a Generational Opportunity

  • 1. ROR icon Rochester Institute of Technology
  • 2. ROR icon Jet Propulsion Lab
  • 3. ROR icon University of California, Santa Barbara
  • 4. ROR icon Las Cumbres Observatory Global Telescope Network
  • 5. ROR icon Goddard Space Flight Center
  • 6. ROR icon California Institute of Technology
  • 7. ROR icon University of California, Irvine
  • 8. ROR icon Massachusetts Institute of Technology
  • 9. ROR icon Johns Hopkins University
  • 10. ROR icon Johns Hopkins University Applied Physics Laboratory
  • 11. ROR icon Kwansei Gakuin University
  • 12. ROR icon Institute of Space and Astronautical Science
  • 13. ROR icon Indian Institute of Astrophysics
  • 14. ROR icon University of California, Berkeley

Abstract

The outer solar system provides a unique, quiet vantage point from which to observe the universe around us, where measurements could enable several niche astrophysical science cases that are too difficult to perform near Earth. NASA's New Horizons mission comprises an instrument package that provides imaging capability from ultraviolet (UV) to near-infrared (near-IR) wavelengths with moderate spectral resolution located beyond the orbit of Pluto. A carefully designed survey with New Horizons can optimize the use of expendable propellant and the limited data telemetry bandwidth to allow several measurements, including a detailed understanding of the cosmic extragalactic background light; studies of the local and extragalactic UV background; measurements of the properties of dust and ice in the outer solar system; confirmation and characterization of transiting exoplanets; determinations of the mass of dark objects using gravitational microlensing; and rapid follow-up of transient events. New Horizons is currently in an extended mission designed to focused on Kuiper Belt science that will conclude in 2021. The astrophysics community has a unique, generational opportunity to use this mission for astronomical observation at heliocentric distances beyond 50 au in the next decade. In this paper, we discuss the potential science cases for such an extended mission, and provide an initial assessment of the most important operational requirements and observation strategies it would require. We conclude that New Horizons is capable of transformative science, and that it would make a valuable and unique asset for astrophysical science that is unlikely to be replicated in the near future.

Additional Information

© 2018 The Astronomical Society of the Pacific. Received 2018 February 23; accepted 2018 August 17; published 2018 September 28. We thank the New Horizons science and instrument teams for their decades of dedicated effort designing, building and flying such a complex mission, and in particular H. Weaver for his patience in answering our largely impenetrable queries and his thoughtful input on our work. We would also like to thank B. Crill for his insightful comments that helped improve the study, and our six referees for their incisive thoughts. The New Horizons cruise phase data sets used in this work were obtained from the Planetary Data System (PDS). Support for I.A. was provided by NASA through the Einstein Fellowship Program, grant PF6-170148. A.R.P. was supported by the NASA Planetary Atmospheres program, grant #NNX13AG55G. D.D. acknowledges support provided by NASA through Hubble Fellowship grant HST-HF2-51372.001-A awarded by the Space Telescope Science Institute.

Attached Files

Submitted - 1802.09536.pdf

Files

1802.09536.pdf

Files (2.5 MB)

Name Size
md5:29e8f867e471f39d418fc9a1095b9565
2.5 MB Preview Download

Additional details

Identifiers

Eprint ID
90047
DOI
10.1088/1538-3873/aadb77
Resolver ID
CaltechAUTHORS:20180928-100943536

Funding

NASA Einstein Fellowship
PF6-170148
NASA
NNX13AG55G
NASA Hubble Fellowship
HST-HF2-51372.001-A

Dates

Created
2018-09-28
Created from EPrint's datestamp field
Updated
2021-11-16
Created from EPrint's last_modified field

Caltech Custom Metadata

Caltech groups
Physics Department