A mean-field approach (MFA) is proposed for the analysis of orientational order in a two-dimensional system of stochastic self-propelled particles interacting by local velocity alignment mechanism. The treatment is applied to the cases of ferromagnetic (F) and liquid-crystal (LC) alignment. In both cases, MFA yields a second order phase transition for a critical noise strength and a scaling exponent of 1/2 for the respective order parameters. We find that the critical noise amplitude eta(c) at which orientational order emerges in the LC case is smaller than in the F-alignment case, i.e. eta(LC)(C) < eta(F)(C). A comparison with simulations of individual-based models with F- resp. LC-alignment shows that the predictions about the critical behavior and the qualitative relation between the respective critical noise amplitudes are correct.
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Univ Nacl Autonoma Mexico, Inst Fis, Apdo Postal 20-364, Ciudad De Mexico 01000, MexicoUniv Nacl Autonoma Mexico, Inst Fis, Apdo Postal 20-364, Ciudad De Mexico 01000, Mexico
Sevilla, Francisco
Chacon-Acosta, Guillermo
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Univ Autonoma Metropolitana Cuajimalpa, Dept Matemat Aplicadas & Sistemas, Vasco Quiroga 4871, Mexico City 05348, Mexico
Univ Potsdam, Inst Phys & Astron, D-14776 Potsdam, GermanyUniv Nacl Autonoma Mexico, Inst Fis, Apdo Postal 20-364, Ciudad De Mexico 01000, Mexico
Chacon-Acosta, Guillermo
Sandev, Trifce
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Macedonian Acad Sci & Arts, Res Ctr Comp Sci & Informat Technol, Bul Krste Misirkov 2, Skopje 1000, North Macedonia
Ss Cyril & Methodius Univ, Inst Phys, Fac Nat Sci & Math, Arhimedova 3, Skopje 1000, North Macedonia
Korea Univ, Dept Phys, Seoul 02841, South KoreaUniv Nacl Autonoma Mexico, Inst Fis, Apdo Postal 20-364, Ciudad De Mexico 01000, Mexico