Universal scaling relation for magnetic sails: momentum braking in the limit of dilute interstellar media
arXiv:1707.02801 · doi:10.1088/2399-6528/aa927e
Abstract
The recent progress in laser propulsion research has advanced substantially the prospects to realize interstellar spaceflight within a few decades. Here we examine passive deceleration via momentum braking from ionized interstellar media. The very large area to mass relations needed as a consequence of the low interstellar densities, of the order of 0.1 particles per , or lower, are potentially realizable with magnetic sails generated by superconducting coils. Integrating the equations of motion for interstellar protons hitting a Biot Savart loop we evaluate the effective reflection area in terms of the velocity of the craft. We find that the numerical data is fitted over two orders of magnitude by the scaling relation , where is the bare sail area, the current and . The critical current is Ampere. The resulting universal deceleration profile can be evaluated analytically and mission parameters optimized for a minimal craft mass. For the case of a sample high speed transit to Proxima Centauri we find that magnetic momentum braking would involve daunting mass requirements of the order of tons. A low speed mission to the Trappist-1 system could be realized on the other side already with a 1.5 ton spacecraft, which would be furthermore compatible with the specifications of currently envisioned directed energy launch systems. The extended cruising times of the order of years imply however that a mission to the Trappist-1 system would be viable only for mission concepts for which time constrains are not relevant.
Open Access
References in corpus (7)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- A temperate rocky super-Earth transiting a nearby cool star
- Stellar Winds on the Main-Sequence I: Wind Model
- The Trouble with the Local Bubble
- The interaction of relativistic spacecrafts with the interstellar medium
- Deceleration of high-velocity interstellar photon sails into bound orbits at Centauri
Cited by in corpus (5)
- Propulsion of Spacecrafts to Relativistic Speeds Using Natural Astrophysical Sources
- Why planetary and exoplanetary protection differ: The case of long duration Genesis missions to habitable but sterile M-dwarf oxygen planets
- Challenges in Scientific Data Communication from Low-Mass Interstellar Probes
- The First Interstellar Astronauts Will Not Be Human
- Photogravimagnetic assists of light sails: a mixed blessing for Breakthrough Starshot?