2 SETI and Temporal Copernicanism
11
References
1. F.C. Adams, G. Laughlin, A dying universe: the long-term fate and evolution of astrophysical
objects. Rev. Mod. Phys. 69, 337–372 (1997)
2. A. Balbi, Cosmology and time, in EPJ Web of Conferences 58 (2013)
3. A. Balbi, The impact of the temporal distribution of communicating civilizations on their
detectability. Astrobiology 18(1), 54–58 (2018)
4. A. Balbi, The spatiotemporal aspects of SETI. Memorie Della Società Astronomica Italiana
89, 425 (2018)
5. P. Behroozi, M.S. Peeples, On the history and future of cosmic planet formation. Monthly
Notices R. Astronom. Soc. 454, 1811–1817 (2015)
6. H. Bondi, T. Gold, The steady-state theory of the expanding universe. Monthly Notices R.
Astronom. Soc. 108, 252–270 (1948)
7. E. Chaisson, Cosmic Evolution: The Rise of Complexity in Nature (Harvard University Press,
2001)
8. M.M. ´
Cirkovi´ c, The temporal aspect of the Drake equation and SETI. Astrobiology 4, 225
(2004)
9. M.M. ´
Cirkovi´ c, A. Balbi, Copernicanism and the typicality in time. Int. J. Astrobiol. 19(2),
101–9 (2020)
10. P. Dayal, M. Ward, C. Cockell, The habitability of the Universe through 13 billion years of
cosmic time, arXiv:1606.09224 (2016)
11. F. Drake, The radio search for intelligent extraterrestrial life, in Current Aspects of Exobiology,
ed. by G. Mamikunian, M.H. Briggs (Oxford University Press, 1965), pp. 323–345
12. S. Dick, The Biological Universe (Cambridge University Press, 1996)
13. J.R. Gott, Implications of the Copernican principle for our future prospects. Nature 363, 315–
319 (1993)
14. A. Loeb, The habitable epoch of the early universe. Int. J. Astrobiol. 13(4), 337–339 (2014)
15. A. Loeb, On the habitability of our universe, arXiv:1606.08926 [astro-ph.CO] (2016)
16. C.H. Lineweaver, An estimate of the age distribution of terrestrial planets in the universe:
quantifying metallicity as a selection effect. Icarus 151, 307–313 (2001)
17. C. Lineweaver, Y. Fenner, B. Gibson, The galactic habitable zone and the age distribution of
complex life in the milky way. Science 303(5654), 59–62 (2004)
18. S.J. Olson, Life-hostile conditions in the early universe can increase the present-day odds of
observing extragalactic life, https://arxiv.org/abs/1704.04125 (2017)
19. M. Rees, Cosmological significance of e2/Gm2 and related “large numbers”. Comments Astrophys. Space Phys. 4, 179 (1972)
20. E. Zackrisson, P. Calissendorff, J. González, A. Benson, A. Johansen, M. Janson, Terrestrial
planets across space and time. Astrophys. J. 833, 214 (2016)
11
References
1. F.C. Adams, G. Laughlin, A dying universe: the long-term fate and evolution of astrophysical
objects. Rev. Mod. Phys. 69, 337–372 (1997)
2. A. Balbi, Cosmology and time, in EPJ Web of Conferences 58 (2013)
3. A. Balbi, The impact of the temporal distribution of communicating civilizations on their
detectability. Astrobiology 18(1), 54–58 (2018)
4. A. Balbi, The spatiotemporal aspects of SETI. Memorie Della Società Astronomica Italiana
89, 425 (2018)
5. P. Behroozi, M.S. Peeples, On the history and future of cosmic planet formation. Monthly
Notices R. Astronom. Soc. 454, 1811–1817 (2015)
6. H. Bondi, T. Gold, The steady-state theory of the expanding universe. Monthly Notices R.
Astronom. Soc. 108, 252–270 (1948)
7. E. Chaisson, Cosmic Evolution: The Rise of Complexity in Nature (Harvard University Press,
2001)
8. M.M. ´
Cirkovi´ c, The temporal aspect of the Drake equation and SETI. Astrobiology 4, 225
(2004)
9. M.M. ´
Cirkovi´ c, A. Balbi, Copernicanism and the typicality in time. Int. J. Astrobiol. 19(2),
101–9 (2020)
10. P. Dayal, M. Ward, C. Cockell, The habitability of the Universe through 13 billion years of
cosmic time, arXiv:1606.09224 (2016)
11. F. Drake, The radio search for intelligent extraterrestrial life, in Current Aspects of Exobiology,
ed. by G. Mamikunian, M.H. Briggs (Oxford University Press, 1965), pp. 323–345
12. S. Dick, The Biological Universe (Cambridge University Press, 1996)
13. J.R. Gott, Implications of the Copernican principle for our future prospects. Nature 363, 315–
319 (1993)
14. A. Loeb, The habitable epoch of the early universe. Int. J. Astrobiol. 13(4), 337–339 (2014)
15. A. Loeb, On the habitability of our universe, arXiv:1606.08926 [astro-ph.CO] (2016)
16. C.H. Lineweaver, An estimate of the age distribution of terrestrial planets in the universe:
quantifying metallicity as a selection effect. Icarus 151, 307–313 (2001)
17. C. Lineweaver, Y. Fenner, B. Gibson, The galactic habitable zone and the age distribution of
complex life in the milky way. Science 303(5654), 59–62 (2004)
18. S.J. Olson, Life-hostile conditions in the early universe can increase the present-day odds of
observing extragalactic life, https://arxiv.org/abs/1704.04125 (2017)
19. M. Rees, Cosmological significance of e2/Gm2 and related “large numbers”. Comments Astrophys. Space Phys. 4, 179 (1972)
20. E. Zackrisson, P. Calissendorff, J. González, A. Benson, A. Johansen, M. Janson, Terrestrial
planets across space and time. Astrophys. J. 833, 214 (2016)
