Paper
15 September 2004 Application of microgels for optical tagging
J. Michael Cathcart, L. Andrew Lyon, Marcus Weck, Robert D. Bock
Author Affiliations +
Abstract
In this paper we present results from our research into the use of microgel-based photonic crystals in an optical tagging application. The basis for this research is the phenomena of self-assembly of hydrogel nano- and microparticles (i.e., microgels) into colloidal crystal Bragg reflectors. Previous research has demonstrated the assembly of Bragg structures that are sensitive in the visible spectral region. This current research focuses on the extension of this process into the infrared regime and the use of these infrared-sensitive structures in the creation of an optical tag. In particular, the research effort emphasizes two primary areas: the development of nanoparticles that are infrared-sensitive and the casting of thin films comprised of these particles. We will also present theoretical data on the optical and physical characteristics of thin films comprised of these particles. This paper will present an overview of the program, outline the processes and issues addressed during our initial efforts in creating these infrared sensitive structures and present a summary of the computational results based on the theoretical analyses.
© (2004) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
J. Michael Cathcart, L. Andrew Lyon, Marcus Weck, and Robert D. Bock "Application of microgels for optical tagging", Proc. SPIE 5403, Sensors, and Command, Control, Communications, and Intelligence (C3I) Technologies for Homeland Security and Homeland Defense III, (15 September 2004); https://doi.org/10.1117/12.542978
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Cited by 1 scholarly publication and 1 patent.
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KEYWORDS
Particles

Reflectivity

Infrared radiation

Thin films

Crystals

Photonic crystals

Dielectrics

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