Quench depth dependence of liquid crystal nucleus growth: A time resolved statistical analysis
β Scribed by Sergei Bronnikov; Ingo Dierking
- Book ID
- 103883849
- Publisher
- Elsevier Science
- Year
- 2005
- Tongue
- English
- Weight
- 426 KB
- Volume
- 358
- Category
- Article
- ISSN
- 0921-4526
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β¦ Synopsis
The growth and coarsening of liquid crystalline (LC) germs, nucleating at isothermal conditions from the isotropic melt after a temperature quench, was investigated experimentally and described by application of irreversible thermodynamics. The influence of quench depth, i.e. super-cooling, on the phase ordering process was studied in detail. The analysis of time resolved statistical size distributions of LC germs reveals two basic phase ordering processes involved: (i) nucleus growth and domain coalescence at short times and (ii) domain coarsening via diffusion (Ostwaldripening) at long times. In the statistical size distributions two individual germ ensembles can be identified. Both of these ensembles exhibit a qualitatively similar behaviour in the course of time, decreasing aggregation energy and increasing mean domain diameter with increasing quench depth. Both ensembles are further shown to obey growth laws that are theoretically predicted for non-conserved order parameter systems.
π SIMILAR VOLUMES
A theoretical method, which we have published in two previous works, has been applied to the study of the glass-crystal transformation of the Ag 0.16 As 0.38 Se 0.46 semiconductor glass under non-isothermal conditions. This method allows one to obtain an evolution equation with temperature for the a