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Iam-Choon Khoo
Liquid Crystals
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Страница 1
Table of Contents
List of Tables
List of Illustrations
Guide
Pages
Страница 7
Страница 8
Страница 9
1 Introduction to Liquid Crystals
1.1. MOLECULAR STRUCTURES AND CHEMICAL COMPOSITIONS
1.2. OPTICAL PROPERTIES
1.2.1. Electronic Optical Transitions and UV Absorption
1.2.2. Visible and Infrared Absorption; Terahertz, Microwave
1.3. LYOTROPIC, POLYMERIC, AND THERMOTROPIC LIQUID CRYSTALS
1.3.1. Lyotropic Liquid Crystals
1.3.2. Polymeric Liquid Crystals
1.3.3. Thermotropic Liquid Crystals: Smectic, Nematic, Cholesteric, and Blue‐phase Liquid Crystals
1.3.4. Functionalized and Discotic Liquid Crystals
1.4. MIXTURES, POLYMER‐DISPERSED, AND DYE‐DOPED LIQUID CRYSTALS
1.4.1. Mixtures
1.4.2. Dye‐doped Liquid Crystals
1.4.3. Polymer‐dispersed and Polymer‐stabilized Liquid Crystals
1.5. LIQUID CRYSTAL CELLS FABRICATION
1.5.1. Nematic LC Cells Assembly
1.5.2. Cholesteric Liquid Crystal Cell Assembly
1.5.3. Blue‐phase Liquid Crystal Cell Assembly
1.5.4. Photosensitive and Tunable Optical Waveguide, Photonic Crystals, and Metamaterial Nanostructures
1.5.5. Isotropic Liquid Crystal Cored Fiber Array
REFERENCES
2 Order Parameter, Phase Transition, and Free Energies 2.1. BASIC CONCEPTS 2.1.1. Introduction
2.1.2. Scalar and Tensor Order Parameters
2.1.3. Long‐ and Short‐range Order
2.2. MOLECULAR INTERACTIONS AND PHASE TRANSITIONS
2.3. MOLECULAR THEORIES AND RESULTS FOR THE LIQUID CRYSTALLINE PHASE
2.3.1. Maier–Saupe Theory: Order Parameter Near
T
c
2.3.2. Nonequilibrium and Dynamical Dependence of the Order Parameter
2.4. ISOTROPIC PHASE OF LIQUID CRYSTALS
2.4.1. Free Energy and Phase Transition
2.4.2. Free Energy in the Presence of an Applied Field
REFERENCES
3 Nematic Liquid Crystals 3.1. INTRODUCTION
3.2. ELASTIC CONTINUUM THEORY 3.2.1. The Vector Field: Director Axis
3.2.2. Elastic Constants, Free Energies, and Molecular Fields
3.3. DIELECTRIC CONSTANTS AND REFRACTIVE INDICES
3.3.1. DC and Low‐frequency Dielectric Permittivity, Conductivities, and Magnetic Susceptibility
3.3.2. Free Energy and Torques by Electric and Magnetic Fields
3.4. OPTICAL DIELECTRIC CONSTANTS AND REFRACTIVE INDICES 3.4.1. Linear Susceptibility and Local Field Effect
3.4.2. Equilibrium Temperature and Order Parameter Dependences of Refractive Indices
3.5. FLOWS AND HYDRODYNAMICS
3.5.1. Hydrodynamics of Ordinary Isotropic Fluids
3.5.2. General Stress Tensor for Nematic Liquid Crystals
3.5.3. Flows with Fixed Director Axis Orientation
3.5.4. Flows with Director Axis Reorientation
3.6. FIELD‐INDUCED DIRECTOR AXIS REORIENTATION EFFECTS
3.6.1. Field‐induced Reorientation Without Flow Coupling: Freedericksz Transition
3.6.2. Reorientation with Flow Coupling
REFERENCES
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