Interstellar communication. I. Maximized data rate for lightweight space-probes

Author:

Hippke MichaelORCID

Abstract

AbstractRecent technological advances could make interstellar travel possible, using ultra-lightweight sails pushed by lasers or solar photon pressure, at speeds of a few per cent the speed of light. Obtaining remote observational data from such probes is not trivial because of their minimal instrumentation (gram scale) and large distances (pc). We derive the optimal communication scheme to maximize the data rate between a remote probe and home-base. The framework requires coronagraphic suppression of the stellar background at the level of 10−9 within a few tenths of an arcsecond of the bright star. Our work includes models for the loss of photons from diffraction, technological limitations, interstellar extinction and atmospheric transmission. Major noise sources are atmospheric, zodiacal, stellar and instrumental. We examine the maximum capacity using the ‘Holevo bound’ which gives an upper limit to the amount of information (bits) that can be encoded through a quantum state (photons), which is a few bits per photon for optimistic signal and noise levels. This allows for data rates of the order of bits per second per Watt from a transmitter of size 1 m at a distance of α Centauri (1.3 pc) to an earth-based large receiving telescope (E-ELT, 39 m). The optimal wavelength for this distance is 300 nm (space-based receiver) to 400 nm (earth-based) and increases with distance, due to extinction, to a maximum of ≈ 3 μm to the centre of the Galaxy at 8 kpc.

Publisher

Cambridge University Press (CUP)

Subject

Earth and Planetary Sciences (miscellaneous),Space and Planetary Science,Physics and Astronomy (miscellaneous),Ecology, Evolution, Behavior and Systematics

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1. Ultrafast transfer of low-mass payloads to Mars and beyond using aerographite solar sails;Acta Astronautica;2024-06

2. Direct Exoplanet Investigation Using Interstellar Space Probes;Handbook of Exoplanets;2023

3. The “Breakthrough” Proposal for Laser-accelerated Spacecraft is not Feasible;Research Notes of the AAS;2021-03-01

4. OWL-Moon in 2050 and beyond;Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences;2020-11-23

5. Challenges in Scientific Data Communication from Low-mass Interstellar Probes;The Astrophysical Journal Supplement Series;2020-08-12

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