Dynamics of jumpwise temperature pitch variations in planar cholesteric layers for a finite strength of surface anchoring

被引:18
作者
Belyakov, VA
Stewart, IW
Osipov, MA
机构
[1] LD Landau Theoret Phys Inst, Moscow 117334, Russia
[2] Univ Strathclyde, Dept Math, Glasgow G1 1XH, Lanark, Scotland
基金
俄罗斯基础研究基金会; 英国工程与自然科学研究理事会;
关键词
D O I
10.1134/1.1787080
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The dynamics of pitch jumps in cholesteric layers with a finite surface anchoring strength under variations in temperature is investigated theoretically. General expressions are presented that connect the dynamics of pitch jumps with the parameters that determine the process, such as the viscosity, the specific form of the anchoring potential, and the dimensionless parameter S-d = K-22/Wd, where W is the depth of the anchoring potential, K-22 is the twist elastic modulus, and d is the layer thickness. It is found that the shape of the anchoring potential significantly influences the temporal behavior of the cholesteric helix in the process of a pitch jump. To illustrate this revealed dependence of the pitch jump dynamics on the shape and strength of the anchoring potential, the problem was investigated for two different models of the surface anchoring potential for a jump mechanism in connection with the director at the surface slipping over the barrier of the anchoring potential. Calculations for the unwinding (winding) of the helix in the process of the jump were performed to investigate the case of infinitely strong anchoring on one surface and finite anchoring on the other, which is important in applications. The results show that an experimental investigation of the dynamics of the pitch jumps will make it possible to distinguish different shapes of the finite strength anchoring potential and, in particular, it will provide a means for determining whether the well-known Rapini-Papoular anchoring potential is the best suited potential relevant to the dynamics of pitch jumps in cholesteric layers with a finite surface anchoring strength. The optimal conditions for experimental observation of these phenomena are briefly considered. (C) 2004 MAIK "Nauka / Interperiodica".
引用
收藏
页码:73 / 82
页数:10
相关论文
共 45 条
[41]   Glacial-interglacial vegetation dynamics in South Eastern Africa coupled to sea surface temperature variations in the Western Indian Ocean [J].
Dupont, L. M. ;
Caley, T. ;
Kim, J-H ;
Castaneda, I. ;
Malaize, B. ;
Giraudeau, J. .
CLIMATE OF THE PAST, 2011, 7 (04) :1209-1224
[42]   Numerical investigation of gas-surface scattering dynamics on the rarefied gas flow through a planar channel caused by a tangential temperature gradient [J].
Rovenskaya, Olga I. .
INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2015, 89 :1024-1033
[43]   Modeling the influence of land cover dynamics on spatio-temporal variations in land surface temperature in Cagayan de Oro River basin, Mindanao, Philippines [J].
Galvez, Rylle Adriane ;
Roa-Quiaoit, Hilly Ann ;
Dagoc, Frandel Louis ;
Guihawan, Jaime ;
Suson, Peter .
MODELING EARTH SYSTEMS AND ENVIRONMENT, 2024, 10 (01) :899-912
[44]   Assessing variations in land cover-land use and surface temperature dynamics for Dehradun, India, using multi-time and multi-sensor landsat data [J].
Kavach Mishra ;
Rahul Dev Garg .
Environmental Monitoring and Assessment, 2023, 195
[45]   Assessing variations in land cover-land use and surface temperature dynamics for Dehradun, India, using multi-time and multi-sensor landsat data [J].
Mishra, Kavach ;
Garg, Rahul Dev .
ENVIRONMENTAL MONITORING AND ASSESSMENT, 2023, 195 (03)