Chasing Nomadic Worlds: A New Class of Deep Space Missions
arXiv:2307.12411 · doi:10.1016/j.actaastro.2023.07.030
Abstract
Nomadic worlds, i.e., objects not gravitationally bound to any star(s), are of great interest to planetary science and astrobiology. They have garnered attention recently due to constraints derived from microlensing surveys and the recent discovery of interstellar planetesimals. In this paper, we roughly estimate the prevalence of nomadic worlds with radii of . The cumulative number density appears to follow a heuristic power law given by . Therefore, smaller objects are probably much more numerous than larger rocky nomadic planets, and statistically more likely to have members relatively close to the inner Solar system. Our results suggest that tens to hundreds of planet-sized nomadic worlds might populate the spherical volume centered on Earth and circumscribed by Proxima Centauri, and may thus comprise closer interstellar targets than any planets bound to stars. For the first time, we systematically analyze the feasibility of exploring these unbounded objects via deep space missions. We investigate what near-future propulsion systems could allow us to reach nomadic worlds of radius in a -year flight timescale. Objects with km are within the purview of multiple propulsion methods such as electric sails, laser electric propulsion, and solar sails. In contrast, nomadic worlds with km are accessible by laser sails (and perhaps nuclear fusion), thereby underscoring their vast potential for deep space exploration.
Published in Acta Astronautica; 21 pages; 3 figures; 1 table
References in corpus (47)
- Most 1.6 Earth-Radius Planets are not Rocky
- No large population of unbound or wide-orbit Jupiter-mass planets
- Interstellar Interloper 1I/2017 U1: Observations from the NOT and WIYN Telescopes
- Habitability and Biosignatures of Hycean Worlds
- Long-Range Reconnaissance Imager on New Horizons
- A water budget dichotomy of rocky protoplanets from Al-heating
- Initial characterization of interstellar comet 2I/Borisov
- Initial Characterization of Interstellar Comet 2I/2019 Q4 (Borisov)
- The Natural History of 'Oumuamua
- Predictions of the Nancy Grace Roman Space Telescope Galactic Exoplanet Survey II: Free-Floating Planet Detection Rates
- A rich population of free-floating planets in the Upper Scorpius young stellar association
- New Horizons Observations of the Cosmic Optical Background
- Natural Transfer of Viable Microbes in Space from Planets in the Extra-Solar Systems to a Planet in our Solar System and Vice-Versa
- The Nucleus of Interstellar Comet 2I/Borisov
- The Survival Rate of Ejected Terrestrial Planets with Moons
- Implications for planetary system formation from interstellar object 1I/2017 U1 (`Oumuamua)
- Pre-discovery Activity of New Interstellar Comet 2I/Borisov Beyond 5 AU
- `Oumuamua as a messenger from the Local Association
- Constraining the Frequency of Free-Floating Planets from a Synthesis of Microlensing, Radial Velocity, and Direct Imaging Survey Results
- Oort cloud Ecology II: Extra-solar Oort clouds and the origin of asteroidal interlopers
- A hypothesis for the rapid formation of planets
- Atmospheric Habitable Zones in Cool Y Dwarf Atmospheres
- Possibilities for an Aerial Biosphere in Temperate Sub Neptune-Sized Exoplanet Atmospheres
- Confirmation of Planet-Mass Objects in Extragalactic Systems
- ESA F-Class Comet Interceptor: Trajectory Design to Intercept a Yet-to-be-discovered Comet
- Presence of water on exomoons orbiting free-floating planets: a case study
- Potential long-term habitable conditions on planets with primordial H-He atmospheres
- Low-cost precursor of an interstellar mission
- Science opportunities with solar sailing smallsats
- Rogue planets and brown dwarfs: Predicting the populations of free-floating planetary mass objects observable with JWST
- Sculpting the circumbinary planet size distribution through resonant interactions with companion planets
- Predicting the water content of interstellar objects from galactic star formation histories
- Electric sails are potentially more effective than light sails near most stars
- A Bayesian Analysis of Technological Intelligence in Land and Oceans
- On the Habitable Lifetime of Terrestrial Worlds with High Radionuclide Abundances
- Potential For Liquid Water Biochemistry Deep Under The Surfaces Of The Moon, Mars And Beyond
- The Andromeda Study: A Femto-Spacecraft Mission to Alpha Centauri
- Presence of liquid water during the evolution of exomoons orbiting ejected free-floating planets
- Measurement of the Free-Floating Planet Mass Function with Simultaneous Euclid and WFIRST Microlensing Parallax Observations
- Free-Floating planet Mass Function from MOA-II 9-year survey towards the Galactic Bulge
- The Case for a Large-Scale Occultation Network
- Detecting Interstellar Objects Through Stellar Occultations
- Optimal mass and speed for interstellar flyby with directed-energy propulsion
- Project Lyra: The Way to Go and the Launcher to Get There
- Dynamic Soaring as a Means to Exceed the Solar Wind Speed
- Wind--Pellet Shear Sailing
- Optimum Location to Intercept Interstellar Objects with Build-and-wait Missions