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行星涡旋碰撞吸积和分岔演化
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作者 林文祝 《地质地球化学》 CSCD 北大核心 1995年第4期12-15,共4页
应用Poincare映射和Pitchfork分岔的数学模式解释了行星角动量传递和小行星带的存在。早期太阳星云是均匀的,小行星体形成星云塌缩后,首先分岔为由难馆物质和挥发性物质构成的两大前行星群。随后由于主涡旋的产生使这两大前行星群各... 应用Poincare映射和Pitchfork分岔的数学模式解释了行星角动量传递和小行星带的存在。早期太阳星云是均匀的,小行星体形成星云塌缩后,首先分岔为由难馆物质和挥发性物质构成的两大前行星群。随后由于主涡旋的产生使这两大前行星群各自分岔为相应的行星。在主涡旋失稳过程中,其边沿卢生的次级小涡旋演化为卫星。在这两大前行星群之间的过渡区域演变为小行星带。 展开更多
关键词 太阳 星云 塌缩 行星涡旋 吸积 分岔演化
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COEVOLUTIONARY DYNAMICS OF PREDATOR-PREY INTERACTIONS
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作者 MAN ZU JINLIANG WANG YASUHIRO TAKEUCHI 《International Journal of Biomathematics》 2012年第3期225-255,共31页
In this paper, with the method of adaptive dynamics, we investigate the coevolution of phenotypic traits of predator and prey species. The evolutionary model is constructed from a deterministic approximation of the un... In this paper, with the method of adaptive dynamics, we investigate the coevolution of phenotypic traits of predator and prey species. The evolutionary model is constructed from a deterministic approximation of the underlying stochastic ecological processes. Firstly, we investigate the ecological and evolutionary conditions that allow for continu- ously stable strategy and evolutionary branching. We find that evolutionary branching in the prey phenotype will occur when the frequency dependence in the prey carrying capacity is not strong. Furthermore, it is found that if the two prey branches move far away enough, the evolutionary branching in the prey phenotype will induce the sec- ondary branching in the predator phenotype. The final evolutionary outcome contains two prey and two predator species. Secondly, we show that under symmetric interactions the evolutionary model admits a supercritical Hopf bifurcation if the frequency depen- dence in the prey carrying capa.city is very weak. Evolutionary cycle is a likely outcome of the nmtation-selection processes. Finally, we find that frequency-dependent selection can drive the predator population to extinction under asymmetric interactions. 展开更多
关键词 Adaptive dynamics continuously stable strategy evolutionary branching BIODIVERSITY coevolution.
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