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首页> 外文期刊>The Journal of Chemical Physics >Critical fluctuations in the domain structure of lipid membranes
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Critical fluctuations in the domain structure of lipid membranes

机译:脂质膜结构域结构的临界波动

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Between 100 kHz and 2 GHz ultrasonic attenuation spectra of two aqueous solutions of vesicles from 1,2-dimyristoyl-L-3-phosphatidylcholine have been measured at 13 temperatures around the main phase transition temperature of the membranes. The spectra are analyzed in terms of an asymptotic high frequency background contribution and three relaxation terms. Two of these terms can be represented by a discrete relaxation time, respectively, the other one extends over a significantly broader frequency range than a Debye-type relaxation term. It was found to nicely follow the predictions of the Bhattacharjee-Ferrell model of three-dimensional critical fluctuations. This finding has been additionally verified by measurements of the scaling function and by an analysis of the relaxation rate of order parameter fluctuations following from the fit of the experimental scaling function data to the theoretical form. Theoretical arguments are presented to indicate why the three-dimensional theory applies so well to the quasi-two-dimensional membrane system.
机译:在 100 kHz 和 2 GHz 之间,在膜主相变温度附近的 13 个温度下测量了来自 1,2-二肉豆蔻酰基-L-3-磷脂酰胆碱的两种囊泡水溶液的超声衰减光谱。根据渐近高频背景贡献和三个弛豫项对频谱进行了分析。其中两个项可以分别用离散的弛豫时间表示,另一个项的频率范围比德拜型弛豫项要宽得多。人们发现它很好地遵循了三维临界涨落的Bhattacharjee-Ferrell模型的预测。通过对标度函数的测量和对实验标度函数数据与理论形式的拟合后阶参数波动的松弛率的分析,进一步验证了这一发现。提出了理论论据,以说明为什么三维理论如此适用于准二维膜系统。

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