We studied mid-infrared sensors based on the wavelength shift of Surface Plasmon Polariton resonances upon solid substance deposition on subwavelength hole arrays in a thin metal film (metal meshes). We present an experimental and numerical investigation of the mid-infrared transmission of metal meshes with and without a dielectric substrate, and we develop an analytical model which describes the Fano interference between the Bethe continuum and the SPP resonances. Fitting the differential transmission signal, measured before and after deposition of a target solid film, we demonstrate sensitivity down to few molecular monolayers, at least one order of magnitude better than mid-infrared vibrational spectroscopy. Sensor calibration was performed on thin polymer films and an example of real application is then provided by measuring the optical density of phospholipid membrane complexes with thickness in the range 2-10 nm. © 2013 SPIE.

Differential Fano interference spectroscopy of subwavelength hole arrays for mid-infrared mass sensors

Di Gaspare A;Mattioli F;Leoni R;Sennato S;
2013

Abstract

We studied mid-infrared sensors based on the wavelength shift of Surface Plasmon Polariton resonances upon solid substance deposition on subwavelength hole arrays in a thin metal film (metal meshes). We present an experimental and numerical investigation of the mid-infrared transmission of metal meshes with and without a dielectric substrate, and we develop an analytical model which describes the Fano interference between the Bethe continuum and the SPP resonances. Fitting the differential transmission signal, measured before and after deposition of a target solid film, we demonstrate sensitivity down to few molecular monolayers, at least one order of magnitude better than mid-infrared vibrational spectroscopy. Sensor calibration was performed on thin polymer films and an example of real application is then provided by measuring the optical density of phospholipid membrane complexes with thickness in the range 2-10 nm. © 2013 SPIE.
2013
Istituto di fotonica e nanotecnologie - IFN
Inglese
Quantum Sensing and Nanophotonic Devices X
8631
http://www.scopus.com/inward/record.url?eid=2-s2.0-84875785431&partnerID=q2rCbXpz
February 02, 2013
San Francisco, California, USA
Fano interference
metal mesh sensor
Mid-infrared
Phospholipid
Surface Plasmon Polariton
11
none
Ortolani, M; Limaj, O; D'Apuzzo, F; Giliberti, V; Di Gaspare, A; Mattioli, F; Leoni, R; Sennato, S; Domenici, F; Bordi, F; Lupi, S
273
info:eu-repo/semantics/conferenceObject
04 Contributo in convegno::04.01 Contributo in Atti di convegno
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/276480
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