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Label-free sensing of ultralow-weight molecules with all-dielectric metasurfaces supporting bound states in the continuum

Academic Article
Publication Date:
2018
abstract:
The realization of an efficient optical sensor based on a photonic crystal metasurface supporting bound states in the continuum is reported. Liquids with different refractive indices, ranging from 1.4000 to 1.4480, are infiltrated in a microfluidic chamber bonded to the sensing dielectric metasurface. A bulk liquid sensitivity of 178 nm/RIU is achieved, while a Q-factor of about 2000 gives a sensor figure of merit up to 445 in air at both visible and infrared excitations. Furthermore, the detection of ultralow-molecular-weight (186 Da) molecules is demonstrated with a record resonance shift of 6 nm per less than a 1 nm thick single molecular layer. The system exploits a normal-to-the-surface optical launching scheme, with excellent interrogation stability and demonstrates alignment-free performances, overcoming the limits of standard photonic crystals and plasmonic resonant configurations. (C) 2018 Chinese Laser Press
Iris type:
01.01 Articolo in rivista
Keywords:
sensor; photonic crystal
List of contributors:
Romano, Silvia; Zito, Gianluigi; Rendina, Ivo; Mocella, Vito
Authors of the University:
MOCELLA VITO
RENDINA IVO
ROMANO SILVIA
ZITO GIANLUIGI
Handle:
https://iris.cnr.it/handle/20.500.14243/398194
Published in:
PHOTONICS RESEARCH
Journal
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https://www.osapublishing.org/prj/fulltext.cfm?uri=prj-6-7-726&id=392686
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