Photonic crystal nanobeam biosensors based on porous silicon

Photonic crystal (PhC) nanobeams (NB) patterned on porous silicon (PSi) waveguide substrates are demonstrated for the specific, label-free detection of oligonucleotides. These photonic structures combine the large active sensing area intrinsic to PSi sensors with the high-quality (Q) factor and low-...

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Veröffentlicht in:Optics express 2019-04, Vol.27 (7), p.9536-9549
Hauptverfasser: Rodriguez, Gilberto A, Markov, Petr, Cartwright, Alyssa P, Choudhury, Moinul H, Afzal, Francis O, Cao, Tengfei, Halimi, Sami I, Retterer, Scott T, Kravchenko, Ivan I, Weiss, Sharon M
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Sprache:eng
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Zusammenfassung:Photonic crystal (PhC) nanobeams (NB) patterned on porous silicon (PSi) waveguide substrates are demonstrated for the specific, label-free detection of oligonucleotides. These photonic structures combine the large active sensing area intrinsic to PSi sensors with the high-quality (Q) factor and low-mode volume characteristic of compact resonant silicon-on-insulator (SOI) PhC NB devices. The PSi PhC NB can achieve a Q-factor near 9,000 and has an approximately 40-fold increased active sensing area for molecular attachment, compared to traditional SOI PhC NB sensors. The PSi PhC NB exhibits a resonance shift that is more than one order of magnitude larger than that of a similarly designed SOI PhC NB for the detection of small chemical molecules and 16-base peptide nucleic acids. The design and fabrication of PSi PhC NB sensors are compatible with CMOS processing, sensor arrays, and integration with lab-on-chip systems.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.27.009536