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来自绝热扫描量热法的证据,证明在注入SmA相的7OCB +庚烷混合物中,在N - SmA相变处存在哈珀林-卢本斯基-马效应。

Evidence from adiabatic scanning calorimetry for the Halperin-Lubensky-Ma effect at the N-SmA phase transitions in mixtures of 7OCB+heptane with an injected SmA phase.

作者信息

Tripathi C S P, Losada-Pérez P, Leys J, Cordoyiannis G, Glorieux C, Thoen J

机构信息

Laboratorium voor Akoestiek en Thermische Fysica, Departement Natuurkunde en Sterrenkunde, KU Leuven, Leuven, Belgium.

出版信息

Eur Phys J E Soft Matter. 2012 Jul;35(7):54. doi: 10.1140/epje/i2012-12054-5. Epub 2012 Jul 6.

DOI:10.1140/epje/i2012-12054-5
PMID:22763720
Abstract

The high-resolution adiabatic scanning calorimetric technique has been used to investigate the nematic-smectic A transition (N-SmA in binary mixtures of the non-smectogenic liquid crystal heptyloxycyanobiphenyl (7OCB) and heptane, exhibiting a so-called injected smectic A phase. With the exception of a mixture with the lowest heptane mole fraction for which only an upper limit of 0.2 ± 0.2 J kg(-1) for a possible latent heat could be obtained, for all other mixtures finite latent heats were obtained. The mole fraction dependence of the latent heat could be well fitted with a crossover function consistent with a mean-field free energy expression with a non-zero cubic term arising from the Halperin-Lubensky-Ma (HLM) coupling between the SmA order parameter and the orientational director fluctuations. The mole fraction dependence of the heat capacity effective critical exponents is similar to that observed in mixtures of the two liquid crystals octyloxycyanobiphenyl (8OCB) and nonylcyanobiphenyl (9OCB). The thermal behavior observed along the N-SmA phase transition line yields further strong evidence for the HLM coupling effect.

摘要

高分辨率绝热量热扫描技术已被用于研究向列相-近晶A相转变(N-SmA),该转变发生在非近晶型液晶庚氧基氰基联苯(7OCB)和庚烷的二元混合物中,呈现出所谓的注入近晶A相。除了庚烷摩尔分数最低的混合物(对于该混合物,仅能获得可能的潜热的上限为0.2±0.2 J kg⁻¹)外,对于所有其他混合物都获得了有限的潜热。潜热的摩尔分数依赖性可以用一个交叉函数很好地拟合,该交叉函数与平均场自由能表达式一致,其中非零立方项源于近晶A序参量与取向矢涨落之间的哈尔珀林-卢本斯基-马(HLM)耦合。有效临界指数的摩尔分数依赖性与在辛氧基氰基联苯(8OCB)和壬基氰基联苯(9OCB)这两种液晶的混合物中观察到的相似。沿着N-SmA相变线观察到的热行为为HLM耦合效应提供了进一步有力的证据。

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