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Sensing With a Biodegradable, Agar-Made Structured Optical Waveguide

delete2025-10-07
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PRE
AI
E
Eric Fujiwara
L
Lidia Rosa
C
Cristiano M. B. Cordeiro
DOI:10.1109/JLT.2025.3618556delete
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Abstract

Abstract

En 中文
Biodegradable optical waveguides are emerging technologies for illumination, actuation, and sensing. Aside from available biopolymer-based optical fibers, flat designs prevail in microfluidics, imaging systems, and tactile interfaces. Therefore, we propose a flat and soft multimode waveguide made of agar, an edible and renewable phycocolloid. While a straightforward molding procedure generates a core/cladding structure with 12 concentric air holes, the glycerol addition improves the mechanical characteristics and reduces the optical loss (2.4 dB/cm). Subsequently, we explored speckle pattern analysis in force magnitude/position and temperature measurements, achieving practical resolutions of 0.05 N, 0.03 mm, and 0.42 $^\circ {}$C, respectively. Moreover, pilot experiments demonstrated the sensor’s response to surrounding fluids based on the hydrogel’s swelling/syneresis behavior. These results motivate forthcoming applications in human-computer interaction, environmental surveillance, and biochemical/biomedical setups.
Keywords:
Agar
biodegradable materials
optical fiber sensors
optical fiber speckle
optical waveguides
soft optics

Journal

Journal of Lightwave Technology cover
Journal of Lightwave Technology
IF:
4.8
Papers:
1.7W
Citations:
3.8W

Organization

U
universidade estadual de campinas
Scholars:
3.3W
Papers: 2.3W
Citations: 19