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crossover exponents
相关语句
  渡越指数
     CROSSOVER EXPONENTS OF NONLINEAR NORMAL CONDUCTOR-INSULATOR RANDOM NETWORK
     非线性正常导体-绝缘体无规网络渡越指数的研究
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  相似匹配句对
     On the Average of Exponents
     On the Average of Exponents
短句来源
     CROSSOVER EXPONENTS OF NONLINEAR NORMAL CONDUCTOR-INSULATOR RANDOM NETWORK
     非线性正常导体-绝缘体无规网络渡越指数的研究
短句来源
     Self-crossover Operator
     自交叉算子
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     Poetry Slam And Crossover
     “诗歌角斗”与跨界表演
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     ON THE BOUNDNESS OF THE EXPONENTS IN T-RINGS
     关于Γ—环的指数有界性
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  crossover exponents
For even m, and d near 2, the active phase still appears immediately, but with nontrivial crossover exponents which we compute in an expansion in ∈ = 2 - d, and with logarithmic corrections in d = 2.
      
A scaling theory is developed for the moments of the distribution, which predicts, for small values ofh=σa/σb, an infinite number of crossover exponents, one for each moment, for Euclidean dimensiond >amp;gt;2, and only one crossover exponent ford=2.
      
We have determined critical properties of this model and found that some surface crossover exponents differed much from that in the case of the standard SG.
      
The properties of critical and tricritical points are changed, the crossover exponents being γ and α, respectively.
      
The results are consistent with the expected crossover exponents ? =1/2 (d=3) and ?=1 (d=2), respectively.
      
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An exact real space renormalisation group is applied to study the adsorption of a single self-avoiding walk on fractal spaces. Exact results of critical exponent v and crossover exponent (?) show that de Gennes' conjecture (?) =1-v is invalid. The phase diagram has qualitatively the same shape as it has on Euclidean space, except for a unique and important difference that the adsorption transition would take place for a single polymer chain at a hard wail exerting a infinitesimal short-range attractive...

An exact real space renormalisation group is applied to study the adsorption of a single self-avoiding walk on fractal spaces. Exact results of critical exponent v and crossover exponent (?) show that de Gennes' conjecture (?) =1-v is invalid. The phase diagram has qualitatively the same shape as it has on Euclidean space, except for a unique and important difference that the adsorption transition would take place for a single polymer chain at a hard wail exerting a infinitesimal short-range attractive force on the fractal space instead of a finite one as on Euclidean space.

本文运用严格重整化群理论研究了两种Fractal空间上自迴避行走的吸收问题。计算所得的交跨指数φ和相关长度指数v的严格解结果表明,de Gennes的推测公式φ=1—v并不成立。相变流图与欧几里德空间中相应问题的流图定性相同。唯一而重要的差别在于Fractal空间中的吸收相变在无穷小吸收作用的硬壁影响下就可发生,而在欧几里德空间只是在一定大小的吸收作用下才会发生。

 
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