PUBLICATIONS

Journal Articles

2013

[35] Y. Gao, Z. Xin, B. Zeng, Q. Gan, X. Cheng, and F. J. Bartoli, “Plasmonic Interferometric Sensor Arrays for High-Performance Label-Free Biomolecular Detection”, Cover Article, Lab on a Chip, 13, 4755 (2013).

[34] B. Zeng, Y. Gao, and F. J. Bartoli, “Ultrathin Nanostructured Metals for Highly Transmissive Plasmonic Subtractive Color Filters”, Scientific Report, 3, 2840 (2013).

[33] Y. Gao, Q. Gan, and F. J. Bartoli, “Spatially Selective Plasmonic Sensing using Metallic Nanoslit Arrays”, IEEE JSTQE, 20, 6900306 (2014).

[32] K. Liu, B. Zeng, H. Song, Q. Gan, F. J. Bartoli, Z. H. Kafafi, “Super Absorption of Ultra-Thin Organic Photovoltaic Films”, Optics Communications, invited paper, (2013).

[31] X. Zeng , Y. Gao , H. Hu , D. Ji , Q. Gan, F J. Bartoli, “A Metal-Insulator-Metal Plasmonic Mach-Zehnder Interferometer Array for Multiplexed Sensing”, J. Appl. Phys. 113, 133102 (2013).

[30] Y. Gao, Z. Xin, Q. Gan, X. Cheng, and F. J. Bartoli, “Plasmonic Interferometers for Label-Free Multiplexed Sensing”, Optics Express, 21, 5859 (2013).

[29] B. Zeng, Q. Gan, Z. Kafafi, and F. J. Bartoli, “Polymeric Photovoltaics with Various Metallic Plasmonic Nanostructures”, J. Appl. Phys., 113, 063109 (2013).

[28] Q. Gan, F. J. Bartoli, and Z. H. Kafafi, “Plasmonic-Enhanced Organic Photovoltaics: Breaking the 10% Efficiency Barrier”, Adv. Mater., 25, 2385 (2013).

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2012

[27] Q. Gan, F. J. Bartoli, and Z. H. Kafafi, “Research Highlights on Organic Photovoltaics and Plasmonics”, IEEE Photonics Journal, 4, 620 (2012). (invited paper)

[26] Q. Gan, W. Bai, S. Jiang, Y. Gao, W. Li, W. Wu and F. J. Bartoli, “Short-Range Surface Plasmon Polaritons for Extraordinary Low Transmission Through Ultra-Thin Metal Films with Nanopatterns”, Plasmonics, 7, 47 (2012).

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2011

[25] Y. Gao, Q. Gan, Z. Xin, X. Cheng, and F. J. Bartoli, “Plasmonic Mach-Zehnder Interferometer for Ultrasensitive On-Chip Biosensing”, ACS Nano, 5, 9836 (2011).

[24] G. Ding, J. Deng, L. Zhou, Q. Gan, J. C. M. Hwang, V. Dierolf, F. J. Bartoli, C. Mazuir, and W. V. Schoenfeld, “Al nano-grid electrode for ultraviolet detectors”, Opt. Lett. 36, 3663 (2011).

[23] Q. Gan, F. Bartoli, “Surface dispersion engineering of planar plasmonic chirped grating for complete visible rainbow trapping”, Appl. Phys. Lett. 98, 251109 (2011).

[22] Q. Gan, Y. Gao, K. Wagner, D. Vezenov, Y.Ding, F. Bartoli, “Experimental verification of the ‘rainbow’ trapping effect”, Proceedings of the National Academy of Sciences (PNAS) 108, 5169 (2011).

[21] Q. Gan, F. Bartoli, “Graded Metallic Gratings for Ultrawideband Surface Wave Trapping at THz Frequencies”, IEEE JSTQE 17, 102 (2011) (Invited paper, cover image).

[20] W. Bai, Q. Gan, G. Song, L. Chen, Z. Kafafi, F. j. Bartoli, “Double plasmonic structure design for broadband absorption enhancement in molecular organic solar cells”, Journal of Photonics for Energy 1, 011121 (2011).

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2010

[19] Q. Gan, F. Bartoli, “Bidirectional surface wave splitter at visible frequencies“, Opt. Lett. 35, 4181 (2010).

[18] L. Chen, G. Wang, Q. Gan, F. Bartoli. “Rainbow trapping and releasing by chirped plasmonic waveguides at visible frequencies”, Appl. Phys. Lett. 97, 153115 (2010).

[17] W. Bai, Q. Gan, G. Song, L. Chen, Z. Kafafi, F. Bartoli, “Broadband Short-Range Surface Plasmon Structures for Absorption Enhancement in Organic Photovoltaics”, Opt. Express 18, A620 (2010).

[16] Pengyu Chen, Qiaoqiang Gan, Filbert J. Bartoli and Lin Zhu, “Spoof surface plasmon assisted light beaming in mid-infrared”, JOSAB, 27, 658 (2010).

[15] Q. Gan, Y. Gao, Q. Wang, L. Zhu, F. Bartoli, “Observation of surface plasmon waves generated by nano-grooves through spectral interference”, Phys. Rev.B. 81, 085443 (2010).

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2009

[14] Q. Gan, L. Zhou, V. Dierolf, F. J. Bartoli. “UV Plasmonic Structures: Direct Observations of UV Extraordinary Optical Transmission and Localized field enhancement through Nanoslits”, IEEE Photonics Journal 1, 245 (2009).

[13] Q. Gan, Y. Gao and F. J. Bartoli. “Vertical Plasmonic Mach-Zehnder Interferometer for ultra-sensitive optical sensing”, Opt. Express 17, 20747 (2009).

[12] L. Zhou, Q. Gan, F. J. Bartoli, V. Dierolf. “Direct Near-field Optical Imaging of UV Bowtie Nanoantennas”, Opt. Express 17, 20301 (2009).

[11] W. Bai, Q. Gan, F. Bartoli, J. Zhang, L. Cai, G. Song, “Design of plasmonic back structures for efficiency enhancement of thin film amorphous Si solar cells”, Opt. Lett. 34, 3725 (2009).

[10] L. Chen, G. Wang, Q. Gan, F. Bartoli. “Trapping rainbow at visible frequencies”, Phys. Rev. B 80, 161106 (2009)(Rapid Communications).

[9] Q. Gan and F. J. Bartoli. “Surface Plasmon-Coupled Semiconductor Diode Laser Package for Refractive Index Sensing”, Optics Lett. 34, 2180 (2009).

[8] Q. Gan, L. Zhou, V. Dierolf, F. J. Bartoli. “Direct mapping of the UV Surface Plasmons”, Optics Letters 34, 1324 (2009).

[7] Q. Gan, Y.J. Ding, F. J. Bartoli. “Rainbow trapping and releasing at telecom wavelengths”, Phys. Rev. Lett. 102, 056801 (2009).

[6] Y. Wang, G. Jing, S. Perry, F. Bartoli, and S. Tatic-Lucic, “Spectral characterization of the voltage-sensitive dye di-4-ANEPPDHQ applied to probing live primary and immortalized neurons”, Optics Express 17, 984 (2009).

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2008

[5] Z. Fu, Q. Gan, F. J. Bartoli. “Numerical Investigation of a Bidirectional Wave Coupler Based on Surface Plasmonic Polarition Bragg Gratings in Near Infrared Spectrum”, Journal of Lightwave Technology IEEE & OSA 26, 3699 (2008).

[4] Q. Gan, Z. Fu, Y.J. Ding, F. J. Bartoli. “Ultra-wide Band Slow Light System Based on THz Plasmonic Graded Metal Grating Structures”, Phys. Rev. Lett. 100, 256803 (2008).

[3] Z. Fu, Q. Gan, Y.J. Ding, F. J. Bartoli. “From Waveguiding to Spatial Localization of THz Waves within a Plasmonic Metallic Grating”, JSTQE IEEE 14, 486 (2008).

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2007

[2] Q. Gan, Z. Fu, Y.J. Ding, F. J. Bartoli. “Bidirectional subwavelength slit splitter for THz surface plasmons”, Opt. Express 15, 18050 (2007)

[1] Q. Gan, B. Guo, G. Song, L. Chen, Z. Fu, Y.J. Ding, F. J. Bartoli. “Plasmonics Surface-wave Splitter”, Appl. Phys. Lett. 90, 161130 (2007). (selected for Virtual Journal of Nanoscale Science & Technology volume 15 issue 18).

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Conferences

[34] Y. Gao, Z. Xin, Q. Gan, X. Cheng, and F. J. Bartoli, “Plasmonic Interferometer for Enhanced Optical Biosensing”, CLEO/QLES, Paper CTh4L.4, San Jose, CA, US (2012).

[33] B. Zeng, Y. Gao, and F. J. Bartoli, “Leak-free Focusing of Propagating Surface Plasmon Waves Using Non-symmetric Double Nanorings”, CLEO, Paper CF2M.3, San Jose, CA, US (2012).

[32] B. Zeng, Q. Gan, Z. Kafafi, and F. J. Bartoli, “Thin-film Organic Photovoltaics with Double Plasmonic Nanostructures: the Metal Effect”, CLEO, Paper CF2J.8, San Jose, CA, US (2012).

[31] Y. Gao, Z. Xin, Q. Gan, X. Cheng, and F. J. Bartoli, “Plasmonic Interferometer for Enhanced Optical Biosensing”, The 6th International Conference on Nanophotonics, Beijing, China (2012).

[30] B. Zeng, Q. Gan, Z. Kafafi, and F. J. Bartoli, “Transparent Plasmonic Nanogrid Electrodes for Absorption Enhancement in Thin-film Organic Solar Cells”, The 6th International Conference on Nanophotonics, Paper O-10, Beijing, China (2012).

[29] Q. Gan, Y. Ding, F. Bartoli, “Adiabatically Graded Plasmonic Structures for ‘Rainbow’ Trapping Effect”, IEEE Photonic Society Annual Meeting (2011) (Invited talk).

[28] Y. Gao, Q. Gan, X. Cheng, F. Bartoli. “Plasmonic Mach-Zehnder interferometer on a microfluidic chip for sensitive optical sensing”, CLEO/QELS (2011).

[27] Q. Gan, Y. Gao, K. Wagner, D. Vezenov, Y. Ding, F. Bartoli, “Experimental verification of the ‘rainbow’ trapping effect in adiabatic plasmonic gratings”, CLEO/QELS (2011).

[26] Y. Gao, Q. Gan, X. Cheng, and F. Bartoli, “Nanoscale plasmonic Mach-Zehnder interferometer on a microfluidic chip for sensitive biosensing”, Academic Symposium, Lehigh University, PA, (2011)

[25] Q. Gan, W. Bai, F. Bartoli,Z. Kafafi, “Broadband Plasmonic-assisted Absorption Enhancement in Thin-film OrganicPhotovoltaics”, SPIE Optics + Photonics Annual Meeting (2011)  (Invited talk).

[24] Q. Gan, Y. Gao, F. Bartoli, “Vertical plasmonic Mach-Zehnder interferometer for sensitive optical sensing”, IEEE Photonic Society Annual Meeting (2010).

[23] Y. Gao, Q. Gan, F. Bartoli, “Spatially selective optical biosensing based on the transmission through nanoslit arrays”, IEEE Photonic Society Annual Meeting (2010).

[22] W. Bai, Q. Gan, G. Song, L. Chen, F. Bartoli, Z. Kafafi,  “Broadband Short-Range Surface Plasmon Structures for Absorption Enhancement in Organic Photovoltaics”, IEEE Photonic Society Annual Meeting (2010).

[21] Q. Gan, Y. Gao, K. Wagner, D. Vezenov, Y. Ding, F. Bartoli, “Experimental verification of the “rainbow” trapping effect in plasmonic graded gratings”, IEEE Photonic Society Annual Meeting (2010).

[20] Q. Gan, Y. Gao, L. Zhu, F. Bartoli, “Observation of surface Plasmon waves generated by nano-grooves through spectral interference”, IEEE Photonic Society Annual Meeting (2010).

[19] F. J. Bartoli, Q. Gan, “Broadband Trapping of Light through Nanoplasmonics”, Photon 10, Southampton UK, Aug. (2010) (invited talk).

[18] Q. Gan, L. Zhou, V. Dierolf, F. Bartoli. “Direct Observations of UV Extraordinary Optical Transmission and Localized field enhancement through Nanoslits”, CLEO/QELS (2010).

[17] Q. Gan, Y. Gao, L. Zhu, F. Bartoli, “What changed the properties of surface plasmon polaritons?” CLEO/QELS (2010).

[16] W. Bai , Q. Gan, G. Song, F. Bartoli,  “Plasmonic back structures designed for efficiency enhancement of thin film solar cells”,CLEO/QELS (2010).

[15] Q. Gan, L. Zhou, V. Dierolf, F. J. Bartoli. “Direct mapping of the UV Surface Plasmons Interference”, Asia Communications and Photonics Conference and Exhibition (ACP), Shanghai, (2009).

[14] Q. Gan, Y. Ding, F. Bartoli. “‘Rainbow’ Trapping and Temperature Tunable Structures for Telecom Waves”, ACP Shanghai (2009).

[13] Q. Gan, F. Bartoli. “Miniaturized Plasmonic Sensors Based on Semiconductor Laser Diode Packages”, ACP Shanghai (2009).

[12] Q. Gan, L. Zhou, V. Dierolf, F. J. Bartoli. “UV Extraordinary Optical Transmission through Nanoslits”, IEEE Photonic Society Annual meeting (2009).

[11] Q. Gan, F. Bartoli. “Plasmonic Sensors based on Semiconductor Laser Diode Packages”, CLEO/IQEC (2009).

[10] Q. Gan, L. Zhou, V. Dierolf, F. Bartoli. “Observation of UV Surface Plasmon Interference”, CLEO/IQEC (2009).

[9] L. Zhou, Q. Gan, F. Bartoli, V. Dierolf. “Direct UV Near-field Optical Imaging of a Metallic Nano Bowtie Antenna”, CLEO/IQEC (2009).

[8] Q. Gan, Z. Fu, Y.J. Ding, F. Bartoli. “Trapped ‘rainbow’ storage of light in a graded grating structure”, Photonic West (2009) (Invited Talk).

[7] Q. Gan, L. Zhou, V. Dierolf, F. J. Bartoli. “Direct mapping of the UV Surface Plasmons Interference at the Al2O3/Al surface”, Post-Deadline Paper, LEOS (2008).

[6] Q. Gan, Y.J. Ding, F. Bartoli. “Trapped Rainbow storage of light from THz to telecom domain”, LEOS (2008).

[5] Y. Wang, Y. Sun, Q. Gan, S. Perry, S. Tatic-Lucic, F. Bartoli. “An LED-Based Miniature Illumination Subsystem for Fluorescence Sensing of Neuron Membrane Potentials”, LEOS (2008).

[4] Q. Gan, Z. Fu, Y.J. Ding, F. Bartoli. “Trapping and releasing rainbow of telecom waves”, Plasmonics and Metamaterials (META) (2008).

[3] Q. Gan, Y. Wang, Y. Sun, S. Tatic-Lucic, F. J. Bartoli. “A prototype device of the miniaturized chip for bio-imaging applications”, CLEO/QELS (2008).

[2] Q. Gan, Z. Fu, Y.J. Ding, F. Bartoli. “From slowing down to stopping of electromagnetic waves within ultrawide bandwidth based on plasmonic graded metallic gratings: a novel scheme for ‘trapped rainbow’”, CLEO/QELS (2008).

[1] Z. Fu, Q. Gan, Z. Pan, F. Bartoli. “Numerical Design of Bidirectional Surface Plasmonic Polaritons Wave Coupler”, CLEO/QELS (2008).

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