콘텐츠로 건너뛰기
Volume 7

The Holographic Thermal Frontier

Mastering Stability and Thermodynamics in Volume Optical Elements

Light is fragile, but your data doesn't have to be.

Strategic Objectives

• Master the thermodynamic principles governing light-field media stability.

• Identify and mitigate mechanical stresses within polymer and glass substrates.

• Predict environmental durability using advanced physical chemistry models.

• Optimize recording parameters for maximum long-term thermal resistance.

The Core Challenge

Volume holographic optical elements often fail under thermal stress, leading to devastating signal loss and material degradation.

01

Foundations of Volume Holography

02

Thermodynamics of Optical Media

03

The Physics of Diffraction Gratings

04

Photopolymer Chemistry

05

Thermal Expansion Phenomena

06

The Glass Transition

07

Interferometry for Analysis

08

Diffusion and Mass Transport

09

Bragg's Law in Thermal Flux

10

Mechanical Stress and Strain

11

Environmental Degradation

12

Physical Chemistry of Polymers

13

Phase Separation in Media

14

Refractive Index Modulation

15

Viscoelasticity in Optical Plastics

16

Kinetics of Polymerization

17

Thermal Management Systems

18

Optical Metrology

19

Photo-thermo-refractive Glass

20

Aging and Reliability Engineering

21

Future Frontiers in Holography

Available eBook Editions

Arabic
English
French
German
Italian
Japanese
Korean
Portuguese
Spanish
Turkish