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首页> 外文期刊>Journal of Statistical Physics >Critical Crossover Functions for Simple Fluids: Non-Analytical Scaling Determination of the Ising-Like Crossover Parameter
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Critical Crossover Functions for Simple Fluids: Non-Analytical Scaling Determination of the Ising-Like Crossover Parameter

机译:简单流体的临界交叉函数:Ising-Like交叉参数的非分析比例确定

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A non-analytical scaling determination of the Ising-like crossover parameter is proposed considering the critical isochore of a simple fluid at finite distance from its critical temperature. The mean crossover functions, estimated from the bounded results of the massive renormalization scheme in field theory applied to the model in three dimensions () and scalar order parameter (), are used to formulate the corresponding scaling equations valid in two well-defined temperature ranges from the critical temperature. The validity range and the Ising-like nature of the corresponding crossover description are discussed in terms of a single Ising-like scale factor characterizing the critical isochore. The asymptotic value of this scale factor can be predicted within the Ising-like preasymptotic domain. Unfortunately, the absence of precise experimental data in such a close vicinity of the critical point leads the direct testing impossible. A contrario, from our scaling equations and the use of precise measurements performed at finite distance from the critical point, its local value can be estimated beyond the Ising-like preasymptotic domain. This non-analytical scaling determination only needs to make reference to the universal features estimated from the mean crossover functions and to introduce a single master dimensionless length common to all the simple fluids. This latter parameter guaranties the uniqueness of the physical length unit used for the theoretical crossover functions and the fluid singular properties when the generalized critical coordinates of the vapor-liquid critical point of each fluid are known. Xenon case along its critical isochore is considered as a typical example to demonstrate the singleness of the Ising-like crossover parameter. With the measurements at finite temperature range of the effective singular behaviors of the isothermal compressibility in the homogeneous domain, and the vapor-liquid coexisting densities in the non homogeneous domain, our scaling equations provide the local estimate of this crossover parameter as a function of the temperature distance from the critical temperature. Our results compare favorably with the single asymptotic value calculated only using four critical coordinates of xenon.
机译:考虑到简单流体的临界等速线在距临界温度有限的距离处,提出了一种类似于伊辛型交叉参数的非分析定标方法。根据在场论中大规模重归一化方案在模型中应用于三个维度()和标量阶数参数()的大规模重归一化方案的有界结果估算出的平均交叉函数,用于制定在两个明确定义的温度范围内有效的相应比例方程从临界温度。根据表征临界等时线的单个类似于Ising的比例因子来讨论相应交叉描述的有效性范围和类似于Ising的性质。该比例因子的渐近值可以在类似Ising的渐近域内进行预测。不幸的是,由于在临界点附近没有精确的实验数据,因此无法进行直接测试。相反,根据我们的缩放方程式以及在距临界点有限距离处进行的精确测量的使用,可以估计超出Ising样前渐近域的局部值。这种非分析性的比例确定只需参考从平均分频函数估计的通用特征,并引入所有简单流体共有的单个主无量纲长度。当已知每种流体的气液临界点的广义临界坐标时,后一个参数可保证用于理论交叉函数的物理长度单位和流体奇异特性的唯一性。氙沿临界等压线的情况被视为一个典型的例子,以证明类似Ising的交叉参数的单一性。通过在有限温度范围内测量均质区域中等温压缩性的有效奇异行为以及非均质区域中气液共存密度,我们的换算方程式提供了该交换参数的局部估计值,该函数是到临界温度的温度距离。我们的结果与仅使用氙气的四个临界坐标计算出的单个渐近值相比具有优势。

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