Multichannel photonic crystal fiber surface plasmon resonance based sensor

Shaimaa I. Azzam1,2, Mohamed Farhat O. Hameed1,3, Rania Eid A. Shehata2, A. M. Heikal1,2, S. S. A. Obayya1
1Centre for Photonics and Smart Materials, Zewail City of Science and Technology, Giza, Egypt
2Electronics and Communication Department, Faculty of Engineering, Mansoura University, Mansoura, Egypt
3Mathematics and Engineering physics Department, Faculty of Engineering, Mansoura University, Mansoura, Egypt

Tóm tắt

Từ khóa


Tài liệu tham khảo

Akowuah, E.K., Gorman, T., Ademgil, H., Haxha, S., Robinson, G.K., Oliver, J.V.: Numerical analysis of a photonic crystal fiber for biosensing applications. IEEE J. Quantum Electron. 48, 1403–1410 (2012a)

Akowuah, E.K., Gorman, T., Ademgil, H., Haxha, S.: A highly sensitive photonic crystal fibre (PCF) surface plasmon resonance (SPR) sensor based on a bimetallic structure of gold and silver. Adaptive Science & Technology (ICAST), 2012 IEEE 4th International Conference on, pp. 121–125 (2012b)

Dash, J.N., Jha, R.: Graphene-based birefringent photonic crystal fiber sensor using surface plasmon resonance. Photon. Technol. Lett. IEEE 26, 1092–1095 (2014)

Falkenstein, P., Justus, B.L.: Fused array preform fabrication of holey optical fibers. Google Patents (2013)

Gao, D., Guan, C., Wen, Y., Zhong, X., Yuan, L.: Multi-hole fiber based surface plasmon resonance sensor operated at near-infrared wave lengths. Opt. Commun. 313, 94–98 (2014)

Harrington, J.A.: A review of IR transmitting, hollow wave guides. Fiber Integr. Opt. 19, 211–217 (2000)

Hassani, A., Skorobogatiy, M.: Design of the microstructured optical fiber-based surface plasmon resonance sensors with enhanced microuidics. Opt. Express 14(24), 11616–11621 (2006)

Hassani, A., Skorobogatiy, M.: Photonic crystal _ber-based plasmonic sensors for the detection of biolayer thickness. JOSA B 26(8), 1550–1557 (2009)

Hautakorpi, M., Mattinen, M., Ludvigsen, H.: Surface-plasmon-resonance sensor based on three-hole microstructured optical fiber. Opt. Express 16, 8427–8432 (2008)

Homola, J., Yee, S.S., Gauglitz, G.: Surface plasmon resonance sensors: review. Sens. Actuators B: Chem. 54, 3–15 (1999)

Homola, J.: Present and future of surface plasmon resonance biosensors. Anal. Bioanal. Chem. 377, 528–539 (2003)

Jha, R., Sharma, A.K.: High-performance sensor based on surface plasmon resonance with chalcogenide prism and aluminum for detection in infrared. Opt. Lett. 34, 749–751 (2009)

Kuhlmey, B.T., Eggleton, B.J., Wu, D.K.: Fluid-filled solid-core photonic bandgap fibers. J. Lightwave Technol. 27(11), 1617–1630 (2009)

Nair, R.R., Blake, P., Grigorenko, A.N., Novoselov, K.S., Booth, T.J., Stauber, T., Peres, N.M.R., Geim, A.K.: Fine Structure constant defines visual transparency of graphene. Science 320(5881), 1308 (2008)

Nielsen, K., Noordegraaf, D., Sørensen, T., Bjarklev, A., Hansen, T.P.: Selective filling of photonic crystal fibres. J. Opt. A: Pure Appl. Opt. 7(8), L13–L20 (2005)

Obayya, S.S.A., Rahman, B.M.A., Grattan, K.T.V.: Accurate finite element modal solution of photonic crystal fibres. Optoelectron. IEE Proc. 152, 241–246 (2005)

Otupiri, R., Akowuah, E.K., Haxha, S., Ademgil, H., AbdelMalek, F., Aggoun, A.: A novel birefrigent photonic crystal fiber surface plasmon resonance biosensor. IEEE Photonics J. 6, 1–11 (2014)

Otupiri, R., Akowuah, E.K., Haxha, S.: Multi-channel SPR biosensor based on PCF for multi-analyte sensing applications. Opt. Express 23(12), 15716–15727 (2015)

Patskovsky, S., Meunier, M., Prasad, P.N., Kabashin, A.V.: Self-noise-filtering phase-sensitive surface plasmon resonance biosensing. Opt. Express 18, 14353–14358 (2010)

Qin, W., Li, S., Yao, Y., Xin, X., Xue, J.: Analyte-filled core self-calibration microstructured optical fiber based plasmonic sensor for detecting high refractive index aqueous analyte. Opt. Lasers Eng. 58, 1–8 (2014)

Rifat, A.A., Amouzad Mahdiraji, G., Sua, Y.M., Shee, Y.G., Ahmed, R., Chow, D.M., MahamdAdikan, F.R.: Surface plasmon resonance photonic crystal fiber biosensor: a practical sensing approach. IEEE Photonics Technol. Lett. 27, 1628–1631 (2015a)

Rifat, A., Mahdiraji, G., Chow, D., Shee, Y., Ahmed, R., Adikan, F.: Photonic crystal fiber-based surface plasmon resonance sensor with selective analyte channels and graphene-silver deposited core. Sensors 15, 11499–11510 (2015b)

Russell, P.: Photonic crystal fibers. Science 299(5605), 358–362 (2003)

Schwuchow, A., Zobel, M., Csaki, A., Schröder, K., Kobelke, J., Fritzsche, W., Schuster, K.: Monolayers of different metal nanoparticles in microstructured optical fibers with multiplex plasmonic properties. Opt. Mater. Express 2(8), 1050–1055 (2012)

Tan, Z., Li, X., Chen, Y., Fan, P.: Improving the sensitivity of fiber surface plasmon resonance sensor by filling liquid in a hollow core photonic crystal fiber. Plasmonics 9(1), 167–173 (2014)

Takeyasu, N., Tanaka, T., Kawata, S.: Metal deposition deep into microstructure by electroless plating. Jpn. J. Appl. Phys., Part 1 44, 1134–1137 (2005)

Wu, L., Chu, H.S., Koh, W.S., Li, E.P.: Highly sensitive graphene biosensors based on surface plasmon resonance. Opt. Express 18, 14395–14400 (2010)

Yu, X., Zhang, Y., Yu, Pan, S., Shum, P., Yan, M., Leviatan, Y., Li, C.: A selectively coated photonic crystal fiber based surface plasmon resonance sensor. J. Opt. 12(1), 015005 (2010)