activity
20172021
most citedNumerical constraints on the size of generation ships from total energy expenditure on board, annual food production and space farming techniques

5 citations · 8 across the 3 of their papers we have counts for

collaborators

5 papers

physics.pop-ph20211 cited

Genetic evolution of a multi-generational population in the context of interstellar space travels -- Part I: Genetic evolution under the neutral selection hypothesis

F. Marin, C. Beluffi, F. Fischer

We updated the agent based Monte Carlo code HERITAGE that simulates human evolution within restrictive environments such as interstellar, sub-light speed spacecraft in order to inc…

physics.pop-ph2020

Water and air consumption aboard interstellar arks

F. Marin, C. Beluffi

The architecture of a large interstellar spaceship, which is capable of serving as a living environment for a population over many generations, is mainly dictated by the needs of s…

physics.pop-ph20195 cited

Numerical constraints on the size of generation ships from total energy expenditure on board, annual food production and space farming techniques

F. Marin, C. Beluffi, R. Taylor +1

In the first papers of our series on interstellar generation ships we have demonstrated that the numerical code HERITAGE is able to calculate the success rate of multi-generational…

astro-ph.IM2018

Computing the minimal crew for a multi-generational space travel towards Proxima Centauri b

F. Marin, C. Beluffi

The survival of a genetically healthy multi-generational crew is of a prime concern when dealing with space travel. It has been shown that determining a realistic population size i…

astro-ph.IM20172 cited

HERITAGE: a Monte Carlo code to evaluate the viability of interstellar travels using a multi-generational crew

F. Marin

To evaluate the feasibility of long duration, manned spaceflights, it is of critical importance to consider the selection and survival of multi-generational crews in a confined spa…