Povzetek
In liquid crystal applications, boundary conditions are essential to ensuring suitable bulk molecular orientation and a deterministic response to external fields. Be it confinement to a droplet or a shell, a glass plate, or an interface with air or another liquid, proper surface alignment must be ensured—mechanically by rubbing, by chemical treatment that adds a layer of aligning molecules, by using photoalignment or even by leaving the surface untreated, using the intrinsic properties of the substrate itself. The anchoring can be classified as unidirectional (perpendicular homeotropic, or at oblique angles), or degenerate (planar or pre-tilted). However, if both substances at the interface are anisotropic, more diverse behaviour is expected. Here, we present a numerical simulation of a nematic droplet in a nematic host, and investigate behaviour of the director field and defects at the interface for different interfacial couplings. Finally, we compare the simulations to experimental images of discotic droplets in a calamitic nematic host.
Ključne besede
tekoči kristali;površinsko sidranje;nematske kapljice;numerične simulacije;liquid crystals;surface anchoring;nematic droplets;numerical simulations;
Podatki
Jezik: |
Angleški jezik |
Leto izida: |
2020 |
Tipologija: |
1.01 - Izvirni znanstveni članek |
Organizacija: |
UL FMF - Fakulteta za matematiko in fiziko |
UDK: |
538.9 |
COBISS: |
15849731
|
ISSN: |
2073-4352 |
Št. ogledov: |
209 |
Št. prenosov: |
67 |
Ocena: |
0 (0 glasov) |
Metapodatki: |
|
Ostali podatki
Sekundarni jezik: |
Slovenski jezik |
Sekundarne ključne besede: |
tekoči kristali;površinsko sidranje;nematske kapljice;numerične simulacije; |
Vrsta dela (COBISS): |
Članek v reviji |
Strani: |
10 str. |
Letnik: |
ǂVol. ǂ10 |
Zvezek: |
ǂart. no. ǂ393 |
Čas izdaje: |
May 2020 |
DOI: |
10.3390/cryst10050393 |
ID: |
14075143 |