Water droplets in a spherically confined nematic solvent: A numerical investigation

被引:34
作者
Stark, H
Stelzer, J
Bernhard, R
机构
[1] Univ Stuttgart, Inst Theoret & Angew Phys, D-70550 Stuttgart, Germany
[2] IMPACT Messtech GmbH, D-71332 Waiblingen, Germany
关键词
D O I
10.1007/s100510050881
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
Recently, it was observed that water droplets suspended in a nematic liquid crystal form linear chains [Poulin et al., Science 275, 1770 (1997)]. The chaining occurs, e.g., in a large nematic drop with homeotropic boundary conditions at all the surfaces. Between each pair of water droplets a point defect in the liquid crystalline order was found in accordance with topological constraints. This point defect causes a repulsion between the water droplets. In our numerical investigation we limit ourselves to a chain of two droplets. For such a complex geometry we use the method of finite elements to minimize the Frank free energy. We confirm an experimental observation that the distance d of the point defect front the surface of a water droplet scales with the radius r of the droplet like d approximate to 0.3r. When the water droplets are moved apart, we find that the point defect does not stay in the middle between the droplets. but rather forms a dipole with one of them. This confirms a theoretical model for the chaining. Analogies to a second order phase transition are drawn. We also find the dipole when one water droplet is suspended in a bipolar nematic drop with two boojums, i.e., surface defects at the outer boundary. Finally, we present a configuration where two droplets repel each other without a defect between them.
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收藏
页码:515 / 523
页数:9
相关论文
共 40 条
[11]  
Drzaic P. S., 1995, Liquid crystal dispersions
[12]   STATIC SCATTERING IN FILLED NEMATIC - NEW LIQUID-CRYSTAL DISPLAY TECHNIQUE [J].
EIDENSCHINK, R ;
DEJEU, WH .
ELECTRONICS LETTERS, 1991, 27 (13) :1195-1196
[13]   Memory effect in filled nematic liquid crystals [J].
Glushchenko, A ;
Kresse, H ;
Reshetnyak, V ;
Reznikov, Y ;
Yaroshchuk, O .
LIQUID CRYSTALS, 1997, 23 (02) :241-246
[14]  
Kleman M, 1983, POINTS LINES WALLS L
[15]   Numerical analysis of the radial-axial structure transition with an applied field in a nematic droplet [J].
Komura, S ;
Atkin, RJ ;
Stern, MS ;
Dunmur, DA .
LIQUID CRYSTALS, 1997, 23 (02) :193-203
[16]   FREEDERICKSZ TRANSITIONS IN SUPRA-MU-M NEMATIC DROPLETS [J].
KRALJ, S ;
ZUMER, S .
PHYSICAL REVIEW A, 1992, 45 (04) :2461-2470
[17]   ERASABLE OPTICAL STORAGE IN BISTABLE LIQUID-CRYSTAL CELLS [J].
KREUZER, M ;
TSCHUDI, T ;
EIDENSCHINK, R .
MOLECULAR CRYSTALS AND LIQUID CRYSTALS, 1992, 223 :219-227
[18]   Director structure around a colloid particle suspended in a nematic liquid crystal [J].
Kuksenok, OV ;
Ruhwandl, RW ;
Shiyanovskii, SV ;
Terentjev, EM .
PHYSICAL REVIEW E, 1996, 54 (05) :5198-5203
[19]  
KURIK M, 1982, JETP LETT, V35, P65
[20]  
Kurik M. V., 1988, Soviet Physics - Uspekhi, V31, P196, DOI 10.1070/PU1988v031n03ABEH005710