ect-ng/Main/2nd ect.bbl
2023-05-23 00:43:22 +08:00

335 lines
12 KiB
Plaintext

\begin{thebibliography}{10}
\bibitem{albert_rmp02}
R.~Albert and A.-L. Barab{\'a}si.
\newblock Statistical mechanics of complex networks.
\newblock {\em Rev. Mod. Phys.}, 74:47--97, 2002.
\bibitem{shen_rsos18}
Chen Shen, Chen Chu, Lei Shi, Matja{\v z} Perc, and Zhen Wang.
\newblock {Aspiration-based coevolution of link weight promotes cooperation in
the spatial prisoner's dilemma game}.
\newblock {\em Royal Society Open Science}, 5:180199, 2018.
\bibitem{Pagan2019game}
Nicol\`{o} Pagan and Florian D\"{o}rfler.
\newblock Game theoretical inference of human behavior in social networks.
\newblock {\em Nature Communications}, 10(1):5507, 2019.
\bibitem{melamed_pnas18}
David Melamed, Ashley Harrell, and Brent Simpson.
\newblock {Cooperation, clustering, and assortative mixing in dynamic
networks}.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 115(5):951--956, January 2018.
\bibitem{boyd2005solving}
Robert Boyd and Peter~J Richerson.
\newblock Solving the puzzle of human cooperation.
\newblock {\em Evolution and Culture}, 1:105--132, 2005.
\bibitem{gachter2009reciprocity}
Simon G{\"a}chter and Benedikt Herrmann.
\newblock Reciprocity, culture and human cooperation: previous insights and a
new cross-cultural experiment.
\newblock {\em Phil. Trans. R. Soc. B}, 364:791--806, 2009.
\bibitem{rand_tcs13}
D.~G. Rand and M.~A. Nowak.
\newblock Human cooperation.
\newblock {\em Trends in Cognitive Sciences}, 17:413--425, 2013.
\bibitem{perc_pr17}
M.~Perc, J.~J. Jordan, D.~G. Rand, Z.~Wang, S.~Boccaletti, and A.~Szolnoki.
\newblock Statistical physics of human cooperation.
\newblock {\em Phys. Rep.}, 687:1--51, 2017.
\bibitem{nowak_11}
M.~A. Nowak and R.~Highfield.
\newblock {\em SuperCooperators: Altruism, Evolution, and Why We Need Each
Other to Succeed}.
\newblock Free Press, New York, 2011.
\bibitem{hrdy_11}
S.~B. Hrdy.
\newblock {\em Mothers and Others: The Evolutionary Origins of Mutual
Understanding}.
\newblock Harvard University Press, Cambridge, MA, 2011.
\bibitem{bowles_11}
Samuel Bowles and Herbert Gintis.
\newblock {\em A Cooperative Species: Human Reciprocity and Its Evolution}.
\newblock Princeton University Press, Princeton, NJ, 2011.
\bibitem{maynard_n73}
J.~Maynard~Smith and G.~R. Price.
\newblock The logic of animal conflict.
\newblock {\em Nature}, 246:15--18, 1973.
\bibitem{hofbauer_98}
Josef Hofbauer and Karl Sigmund.
\newblock {\em Evolutionary Games and Population Dynamics}.
\newblock Cambridge University Press, Cambridge, U.K., 1998.
\bibitem{cressman_03}
R.~Cressman.
\newblock {\em Evolutionary Dynamics and Extensive Form Games}.
\newblock MIT Press, Cambridge, MA, 2003.
\bibitem{szabo_pr07}
Gy{\"o}rgy Szab{\'o} and G{\'a}bor F{\'a}th.
\newblock Evolutionary games on graphs.
\newblock {\em Phys. Rep.}, 446:97--216, 2007.
\bibitem{santos_prl05}
F.~C. Santos and J.~M. Pacheco.
\newblock Scale-free networks provide a unifying framework for the emergence of
cooperation.
\newblock {\em Phys. Rev. Lett.}, 95:098104, 2005.
\bibitem{ohtsuki_n06}
Hisashi Ohtsuki, Christoph Hauert, Erez Lieberman, and Martin~A. Nowak.
\newblock A simple rule for the evolution of cooperation on graphs and social
networks.
\newblock {\em Nature}, 441:502--505, 2006.
\bibitem{santos_pnas06}
F.~C. Santos, J.~M. Pacheco, and Tom Lenaerts.
\newblock Evolutionary dynamics of social dilemmas in structured heterogeneous
populations.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 103:3490--3494, 2006.
\bibitem{santos_n08}
F.~C. Santos, M.~D. Santos, and J.~M. Pacheco.
\newblock Social diversity promotes the emergence of cooperation in public
goods games.
\newblock {\em Nature}, 454:213--216, 2008.
\bibitem{tanimoto_pre07}
J.~Tanimoto.
\newblock Dilemma solving by coevolution of networks and strategy in a $2
\times 2$ game.
\newblock {\em Phys. Rev. E}, 76:021126, 2007.
\bibitem{fu_pre09}
F.~Fu, T.~Wu, and L.~Wang.
\newblock Partner switching stabilizes cooperation in coevolutionary prisoner's
dilemma.
\newblock {\em Phys. Rev. E}, 79:036101, 2009.
\bibitem{lee_s_prl11}
S.~Lee, P.~Holme, and Z.-X. Wu.
\newblock Emergent hierarchical structures in multiadaptive games.
\newblock {\em Phys. Rev. Lett.}, 106:028702, 2011.
\bibitem{rand_pnas14}
D.~G. Rand, M.~A. Nowak, J.~H. Fowler, and N.~A. Christakis.
\newblock Static network structure can stabilize human cooperation.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 111:17093--17098, 2014.
\bibitem{fu2017leveraging}
Feng Fu and Xingru Chen.
\newblock Leveraging statistical physics to improve understanding of
cooperation in multiplex networks.
\newblock {\em New J. Phys.}, 19:071002, 2017.
\bibitem{allen2017evolutionary}
Benjamin Allen, Gabor Lippner, Yu-Ting Chen, Babak Fotouhi, Martin~A Nowak, and
Shing-Tung Yau.
\newblock Evolutionary dynamics on any population structure.
\newblock {\em Nature}, 544:227--230, 2017.
\bibitem{fotouhi_rsif19}
Babak Fotouhi, Naghmeh Momeni, Benjamin Allen, and Martin~A. Nowak.
\newblock Evolution of cooperation on large networks with community structure.
\newblock {\em J. R. Soc. Interface}, 16:20180677, 2019.
\bibitem{nowak_n92b}
M.~A. Nowak and R.~M. May.
\newblock Evolutionary games and spatial chaos.
\newblock {\em Nature}, 359:826--829, 1992.
\bibitem{perc_bs10}
M.~Perc and A.~Szolnoki.
\newblock Coevolutionary games -- a mini review.
\newblock {\em BioSystems}, 99:109--125, 2010.
\bibitem{rand_pnas11}
D.~G. Rand, Samuel Arbesman, and Nicholas~A. Christakis.
\newblock Dynamic social networks promote cooperation in experiments with
humans.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 108:19193--19198, 2011.
\bibitem{fehl_el11}
Katrin Fehl, Daniel~J. van~der Post, and Dirk Semmann.
\newblock Co-evolution of behaviour and social network structure promotes human
cooperation.
\newblock {\em Ecol. Lett.}, 14:546--551, 2011.
\bibitem{wang_j_pnas12}
Jing Wang, S.~Suri, and D.J. Watts.
\newblock Cooperation and assortativity with dynamic partner updating.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 109:14363--14368, 2012.
\bibitem{szolnoki_epl14b}
A.~Szolnoki and M.~Perc.
\newblock Coevolutionary success-driven multigames.
\newblock {\em EPL}, 108:28004, 2014.
\bibitem{wang_z_njp14}
Z.~Wang, A.~Szolnoki, and M.~Perc.
\newblock Self-organization towards optimally interdependent networks by means
of coevolution.
\newblock {\em New J. Phys.}, 16:033041, 2014.
\bibitem{Otten2022}
Kasper Otten, Ulrich~J. Frey, Vincent Buskens, Wojtek Przepiorka, and Naomi
Ellemers.
\newblock Human cooperation in changing groups in a large-scale public goods
game.
\newblock {\em Nature Communications}, 13(1):6399, Oct 2022.
\bibitem{EHB34164}
Pat Barclay.
\newblock Strategies for cooperation in biological markets, especially for
humans.
\newblock {\em Evolution and Human Behavior}, 34:164--175, 2013.
\bibitem{zhang2018gaming}
Yichao Zhang, Guanghui Wen, Guanrong Chen, Jiasheng Wang, Minmin Xiong, Jihong
Guan, and Shuigeng Zhou.
\newblock Gaming temporal networks.
\newblock {\em IEEE Transactions on Circuits and Systems II: Express Briefs},
66(4):672--676, 2018.
\bibitem{miritello2013time}
Giovanna Miritello, Rub{\'e}n Lara, and Esteban Moro.
\newblock Time allocation in social networks: correlation between social
structure and human communication dynamics.
\newblock In {\em Temporal Networks}, pages 175--190. Springer, 2013.
\bibitem{GTN}
Naoki Masuda and Renaud Lambiotte.
\newblock {\em A Guide to Temporal Networks}.
\newblock World Scientific Publishing, 2016.
\bibitem{holme_sr12}
Petter Holme and Jari Saram{\"a}ki.
\newblock Temporal networks.
\newblock {\em Phys. Rep.}, 519:97--125, 2012.
\bibitem{zhang_yc_sr15}
Yichao Zhang, Guanrong Chen, Jihong Guan, Zhongzhi Zhang, and Shuigeng Zhou.
\newblock {Unfavorable individuals in social gaming networks}.
\newblock {\em Scientific Reports}, 5:17481, December 2015.
\bibitem{wang_js_sr17}
Jiasheng Wang, Yichao Zhang, Jihong Guan, and Shuigeng Zhou.
\newblock {Divide-and-conquer tournament on social networks}.
\newblock {\em Scientific Reports}, 7(1):15484, 2017.
\bibitem{gracia-lazaro_pnas12}
C.~Gracia-L{\'a}zaro, A.~Ferrer, G.~Ruiz, A.~Taranc{\'o}n, J.A. Cuesta,
A.~S{\'a}nchez, and Y.~Moreno.
\newblock Heterogeneous networks do not promote cooperation when humans play a
prisoner's dilemma.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 109:12922--12926, 2012.
\bibitem{BA}
A.-L. Barab\'{a}si and R.~Albert.
\newblock Emergence of scaling in random networks.
\newblock {\em Science}, 286:509--512, 1999.
\bibitem{maynard_82}
Smith.~J. Maynard.
\newblock {\em Evolution and the Theory of Games}.
\newblock Cambridge University Press, Cambridge, U.K., 1982.
\bibitem{barabasi_s99}
A.-L. Barab{\'a}si and R.~Albert.
\newblock Emergence of scaling in random networks.
\newblock {\em Science}, 286:509--512, 1999.
\bibitem{Watts98Nature}
D.~J. Watts and S.~H. Strogatz.
\newblock Collective dynamics of ``small-world" networks.
\newblock {\em Nature}, 393:440--442, 1998.
\bibitem{evans2019cooperation}
Anthony~M Evans and David~G Rand.
\newblock Cooperation and decision time.
\newblock {\em Current Opinion in Psychology}, 26:67--71, 2019.
\bibitem{evans2015fast}
Anthony~M Evans, Kyle~D Dillon, and David~G Rand.
\newblock Fast but not intuitive, slow but not reflective: Decision conflict
drives reaction times in social dilemmas.
\newblock {\em Journal of Experimental Psychology: General}, 144(5):951, 2015.
\bibitem{yamagishi2017response}
Toshio Yamagishi, Yoshie Matsumoto, Toko Kiyonari, Haruto Takagishi, Yang Li,
Ryota Kanai, and Masamichi Sakagami.
\newblock Response time in economic games reflects different types of decision
conflict for prosocial and proself individuals.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 114(24):6394--6399, 2017.
\bibitem{spiliopoulos2018bcd}
Leonidas Spiliopoulos and Andreas Ortmann.
\newblock The {BCD} of response time analysis in experimental economics.
\newblock {\em Experimental Economics}, 21(2):383--433, 2018.
\bibitem{stewart_pnas12}
Alexander~J. Stewart and Joshua~B. Plotkin.
\newblock Extortion and cooperation in the prisoner's dilemma.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 109:10134--10135, 2012.
\bibitem{fu_pre08b}
F.~Fu, C.~Hauert, M.~A. Nowak, and L.~Wang.
\newblock Reputation-based partner choice promotes cooperation in social
networks.
\newblock {\em Phys. Rev. E}, 78:026117, 2008.
\bibitem{gallo_pnas15}
Edoardo Gallo and Chang Yan.
\newblock {The effects of reputational and social knowledge on cooperation}.
\newblock {\em Proc. Natl. Acad. Sci. U.S.A.}, 112(12):201415883, March 2015.
\bibitem{wang2017onymity}
Zhen Wang, Marko Jusup, Rui-Wu Wang, Lei Shi, Yoh Iwasa, Yamir Moreno, and
J{\"u}rgen Kurths.
\newblock Onymity promotes cooperation in social dilemma experiments.
\newblock {\em Science Advances}, 3:e1601444, 2017.
\bibitem{sefton_ei07}
M.~Sefton, O.~Schupp, and J.~M. Walker.
\newblock The effect of rewards and sanctions in provision of public goods.
\newblock {\em Econ. Inq.}, 45:671--690, 2007.
\bibitem{fehr_n02}
Ernst Fehr and Simon G{\"a}chter.
\newblock Altruistic punishment in humans.
\newblock {\em Nature}, 415:137--140, 2002.
\bibitem{PCB14e1006347}
Xiaojie Chen and Attila Szolnok.
\newblock Punishment and inspection for governing the commons in a
feedback-evolving game.
\newblock {\em PLoS Comput. Biol.}, 14(7):e1006347, 2018.
\bibitem{hauert_n04}
Christoph Hauert and Michael Doebeli.
\newblock Spatial structure often inhibits the evolution of cooperation in the
snowdrift game.
\newblock {\em Nature}, 428:643--646, 2004.
\bibitem{Donahue2020}
Kate Donahue, Oliver~P. Hauser, Martin~A. Nowak, and Christian Hilbe.
\newblock Evolving cooperation in multichannel games.
\newblock {\em Nature Communications}, 11(1):3885, Aug 2020.
\bibitem{Park2022}
Peter~S. Park, Martin~A. Nowak, and Christian Hilbe.
\newblock Cooperation in alternating interactions with memory constraints.
\newblock {\em Nature Communications}, 13(1):737, Feb 2022.
\end{thebibliography}