Optimization of One Dimensional Photonic Crystal Structure with Light Reflection Characteristics
S Amuthavalli, Manisha Chattopadhyay
Abstract
S Amuthavalli, Manisha Chattopadhyay
Abstract
Photonic crystals are optical materials with repeating structures. This paper reviews the light reflection characteristics of one dimensional (lD) photonic crystals with defects in the visible region. Designing the ID photonic crystal for reflection based applications such as mirrors and reflection coatings, knowledge of photonic bandgap and the reflection characteristics in the periodic structure is essential. Modeling of flow of light in photonic crystals are studied with Comsol simulations which is based on FEM method. An observational study on reflection properties of ID photonic crystal reveals the impacts of periodic layer thickness, refractive index, and periodicity on light. The reflection spectrum of the photonic crystal structure with defects have been analyzed and a deep understanding of the photonic crystal with defect has been achieved. In this paper it is proposed that consistently high reflection can be achieved along with the structure optimization using defects.
OpenAlex reports 5 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Photonic crystals are optical materials with repeating structures. This paper reviews the light reflection characteristics of one dimensional (lD) photonic crystals with defects in the visible region. Designing the ID photonic crystal for reflection based applications such as mirrors and reflection coatings, knowledge of photonic bandgap and the reflection characteristics in the periodic structure is essential. Modeling of flow of light in photonic crystals are studied with Comsol simulations which is based on FEM method. An observational study on reflection properties of ID photonic crystal reveals the impacts of periodic layer thickness, refractive index, and periodicity on light. The reflection spectrum of the photonic crystal structure with defects have been analyzed and a deep understanding of the photonic crystal with defect has been achieved. In this paper it is proposed that consistently high reflection can be achieved along with the structure optimization using defects.
Key concepts: Photonic crystal, Reflection (computer programming), Materials science, Photonics, Optics, Yablonovite, Refractive index, Optoelectronics