Chin. Phys. Lett.  2008, Vol. 25 Issue (2): 363-366    DOI:
Original Articles |
Does the Compelled Cooperation Determine the Structure of a Complex Network?
XUAN Qi;LI Yan-Jun;WU Tie-Jun
Department of Control Science and Engineering, Zhejiang University, Hangzhou 310027
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XUAN Qi, LI Yan-Jun, WU Tie-Jun 2008 Chin. Phys. Lett. 25 363-366
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Abstract Cooperation among individuals is considered to play an important role in the evolution of complex networked systems in physical, biological, economical and even epidemiological worlds, but its effects on the development of the
systems is not so clear. We consider a specific kind of primal cooperation in a group of individuals, i.e., an individual never cooperates with others except when compelled to do so. The lowest level of compelled cooperation, in which cooperators share no message or resources, is investigated in the background of complex networks driven by the simple game rock--paper--scissors. Simulation results show that with the evolution of the systems, the cooperation will spread all over the networks, and finally results in systems with modular structures and a scale-free property.
Keywords: 02.50.Le      87.23.Kg      89.65.Ef      89.75.Hc     
Received: 02 April 2007      Published: 30 January 2008
PACS:  02.50.Le (Decision theory and game theory)  
  87.23.Kg (Dynamics of evolution)  
  89.65.Ef (Social organizations; anthropology ?)  
  89.75.Hc (Networks and genealogical trees)  
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https://cpl.iphy.ac.cn/       OR      https://cpl.iphy.ac.cn/Y2008/V25/I2/0363
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XUAN Qi
LI Yan-Jun
WU Tie-Jun
[1] Albert R and Barabasi A -L 2002 Rev. Mod. Phys. 74 47
[2]Watts D J and Strogatz S H 1998 Nature 393 440
[3]Barrat A and Weigt M 2000 Eur. Phys. J. B 13547
[4]Barabasi A-L and Albert R 1999 Science 286509
[5]Barabasi A-L and Oltvai Z N 2004 Nature 5101
[6]Ravasz E, Somera A L, Mongru D A, Oltvai Z N andBarabasi A-L 2002 Science 297 1551
[7]Xuan Q, Li Y J and Wu T J 2006 Phys. Rev. E 73036105
[8]Strogatz S H 2001 Nature 410 268
[9]Colman A M 1982 ooperation and Competition in Humansand Animals (Wokingham: Van Nostrand Reinhold)
[10]Nowak M A, Sasaki A, Taylor C and Fudenberg D 2004 Nature 428 646
[11]Hauert C and Doebeli M 2004 Nature 428 643
[12]Roberts G and Sherratt T N 1998 Nature 394 175
[13]Taylor P D and Day T 2004 Nature 428 611
[14]McNamara J M, Barta Z and Houston A I 2004 Nature 428 745
[15]Ackermann M and Chao L 2004 Curr. Biol. 14R73
[16]Rainey P B and Rainey K 2003 Nature 425 72
[17]Vellcer G J and Yu Y -T N 2003 Nature 425 75
[18]M-Gibbons M and Adams E S 2002 Science 2982146
[19]Palameta B and Brown W M 1999 Animal Behavior 57 F1
[20]West S A, Pen I and Griffin A S 2002 Science 296 72
[21]C-Brock T 2002 Science 296 69
[22]Brandt H, Hauert C and Sigmund K 2006 Proceedingsof the National Academy of Sciences 103 495
[23]Roughgarden J, Oishi M and Akcay E 2006 Science 311 965
[24]Nowak M A and Sigmund K 2005 Nature 437 1291
[25]Fehr E and Fischbacher U 2003 Nature 425 785
[26]Fowler J H 2005 PNAS 102 7047
[27]Nowak M A and Sigmund K 2002 Nature 418 138
[28]Anghel M, Toroczkai Z, Bassler K E and Korniss G 2004 Phys. Rev. Lett. 92 058701
[29]Santos F C and Pacheco J M 2005 Phys. Rev. Lett. 95 098104
[30]Zimmermann M G, Eguiluz V M and Miguel M S 2004 Phys. Rev. E 69 065102(R)
[31]Holme P, Trusina A, Kim B J and Minnhagen P 2003 Phys. Rev. E 68 030901(R)
[32]Gintis H, Smith E A and Bowles S 2001 J. Theor. Biol. 213 103
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