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Enhanced on-chip terahertz vibrational absorption spectroscopy using evanescent fields in silicon waveguide structures

Hadi Amarloo, Safieddin Safavi‐Naeini

2021Optics Express32 citationsDOIOpen Access PDF

Abstract

In this study, we demonstrate on-chip terahertz absorption spectroscopy using dielectric waveguide structures. The structures' evanescent fields interact with the sample material surrounding the waveguide, enabling the absorption signature of the material to be captured. The ability of fabricated terahertz dielectric waveguide structures, based on the newly developed silicon-BCB-quartz platform, to capture the fingerprint of α-lactose powder (as an example material) at 532 GHz is examined. Enhancement of the spectroscopy sensitivity through techniques such as tapering the waveguide, confining the field in a slot dielectric waveguide, and increasing the interaction length using a spiral-shaped waveguide are investigated experimentally. The proposed on-chip spectroscopy structures outperform conventional and state-of-the-art approaches in terms of sensitivity and compactness.

Topics & Concepts

Terahertz radiationMaterials scienceWaveguideTerahertz spectroscopy and technologyOpticsDielectricSpectroscopyOptoelectronicsSiliconAbsorption (acoustics)PhysicsComposite materialQuantum mechanicsTerahertz technology and applicationsSuperconducting and THz Device TechnologyMillimeter-Wave Propagation and Modeling
Enhanced on-chip terahertz vibrational absorption spectroscopy using evanescent fields in silicon waveguide structures | Litcius