Li, E., Zhou, B., Bo, Y. and Wang, A.X., 2021. High-Speed Femto-Joule per Bit Silicon-Conductive Oxide Nanocavity Modulator. Journal of Lightwave Technology, 39(1), pp.178-185. |
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Hsu, W.C., Li, E., Zhou, B. and Wang, A.X., 2021. Characterization of field-effect mobility at optical frequency by microring resonators. Photonics Research, 9(4), pp.615-621. |
Hsu, W.C., Zhen, C. and Wang, A.X., 2021. Electrically Tunable High-Quality Factor Silicon Microring Resonator Gated by High Mobility Conductive Oxide. ACS Photonics. |
Zhang, B., Hou, X., Zhen, C. and Wang, A.X., 2021. Sub-Part-Per-Billion Level Sensing of Fentanyl Residues from Wastewater Using Portable Surface-Enhanced Raman Scattering Sensing. Biosensors, 11(10), p.370. |
Hsu, W.C., Zhou, B. and Wang, A., 2021. MOS Capacitor-Driven Silicon Modulators: A Mini Review and Comparative Analysis of Modulation Efficiency and Optical Loss. IEEE Journal of Selected Topics in Quantum Electronics. |
Wang, S., Guo, J., Ma, Y., Wang, A.X., Kong, X. and Yu, Q., 2021. Fabrication and Application of SERS-Active Cellulose Fibers Regenerated from Waste Resource. Polymers, 13(13). |
Liu, S., Tian, X., Guo, J., Kong, X., Xu, L., Yu, Q. and Wang, A.X., 2021. Multi-functional plasmonic fabrics: A flexible SERS substrate and anti-counterfeiting security labels with tunable encoding information. Applied Surface Science, 567, p.150861. |
Shakya, J.R., Shashi, F.H. and Wang, A.X., 2021. Plasmonic color filter array based visible light spectroscopy. Scientific reports, 11(1), pp.1-8. |
Song, J., Yuan, S., Cui, C., Wang, Y., Li, Z., Wang, A.X., Zeng, C. and Xia, J., 2020. High-efficiency and high-speed germanium photodetector enabled by multiresonant photonic crystal. Nanophotonics |
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Li, E. and Wang, A., 2020. Femto-joule all-optical switching using epsilon-near-zero high-mobility conductive oxide. IEEE Journal of Selected Topics in Quantum Electronics. |
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Kraai, J.A., Wang, A.X. and Rorrer, G.L., 2020. Photonic Crystal Enhanced SERS Detection of Analytes Separated by Ultrathin Layer Chromatography Using a Diatom Frustule Monolayer. Advanced Materials Interfaces, p.2000191. |
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Jarrett, H., Wade, M., Kraai, J., Rorrer, G.L., Wang, A.X. and Tan, H., 2020. Self-powered microfluidic pump using evaporation from diatom biosilica thin films. Microfluidics and Nanofluidics, 24, pp.1-14. |
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Zhou, B., Li, E., Bo, Y. and Wang, A., 2020. High-Speed Plasmonic-Silicon Modulator Driven by Epsilon-near-zero Conductive Oxide. Journal of Lightwave Technology. |
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Squire, K.J., Kundan, S., Zhang, B., Kraai, J., Rorrer, G.L. and Wang, A.X., 2020. Multi-scale Photonic Crystal Enhanced Core-Shell Plasmonic Nanomaterial for Rapid Vapor-Phase Detection of Explosives. ACS Applied Nano Materials. |
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Liu, S., Kannegulla, A., Kong, X., Sun, R., Liu, Y., Wang, R., Yu, Q. and Wang, A.X., 2020. Simultaneous colorimetric and surface-enhanced Raman scattering detection of melamine from milk. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, p.118130. |
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Zhang, Y., Chong, X., Sun, H., Kedir, M., Kim, K.J., Ohodnicki, P., Wang, A. and Chang, C.H., 2020. Nanostructured CuS Thin Film via a Spatial Successive Ionic Layer Adsorption and Reaction Process Showing Significant Surface-Enhanced Infrared Absorption of CO2. Journal of Materials Chemistry C. |
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Liu, S., Cui, R., Ma, Y., Yu, Q., Kannegulla, A., Wu, B., Fan, H., Wang, A.X. and Kong, X., 2020. Plasmonic cellulose textile fiber from waste paper for BPA sensing by SERS. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, 227, p.117664. |
Liverman, S., Bialek, H., Natarajan, A. and Wang, A., 2019. VCSEL Array-based Gigabit Free-space Optical Femtocell Communication. Journal of Lightwave Technology. |
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Sivashanmugan, K., Zhao, Y. and Wang, A.X., 2019. Tetrahydrocannabinol Sensing in Complex Biofluid with Portable Raman Spectrometer Using Diatomaceous SERS Substrates. Biosensors, 9(4), p.125. |
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Shakya, J. and Wang, A.X., 2019. Metal-Insulator-Metal plasmonic grating filter with suppressed Rayleigh anomaly. Journal of Physics Communications. |
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Liu, S., Cui, R., Ma, Y., Yu, Q., Kannegulla, A., Wu, B., Fan, H., Wang, A.X. and Kong, X., 2019. Plasmonic cellulose textile fiber from waste paper for BPA sensing by SERS. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy, p.117664. |
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Li, Erwen, and Alan X. Wang. "Theoretical Analysis of Energy Efficiency and Bandwidth Limit of Silicon Photonic Modulators." Journal of Lightwave Technology 37, no. 23 (2019): 5801-5813. |
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S. Liverman, S. Chen, A. Natarajan, and A. X. Wang, Hybrid Femtocell and Attocell Optical Links for Free-space Optical Communication, Optical Engineering, 58(8), p.086112. |
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Zhao, Y., Tan, A., Squire, K., Sivashanmugan, K. and Wang, A.X., 2019. Quaternion-based Parallel Feature Extraction: Extending the Horizon of Quantitative Analysis using TLC-SERS Sensing. Sensors and Actuators B: Chemical, p.126902. |
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Q Gao, E Li, B Zhou, AX Wang, Hybrid silicon-conductive oxide-plasmonic electro-absorption modulator with 2-V swing voltage, Journal of Nanophotonics 13 (3), 036005 |
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Kundan Sivashanmugan, Kenneth Squire, Joseph A. Kraai, Ailing Tan, Yong Zhao, Gregory L. Rorrer, and Alan X. Wang, Biological Photonic Crystal-Enhanced Plasmonic Mesocapsules: Approaching Single-Molecule Optofluidic-SERS Sensing, Adv. Optical Mater. 2019, 1900415 |
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E Li, BA Nia, B Zhou, AX Wang, Transparent conductive oxide-gated silicon microring with extreme resonance wavelength tunability, Photonics Research 7 (4), 473-477, 2019 |
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KJ Squire, Y Zhao, A Tan, K Sivashanmugan, JA Kraai, GL Rorrer, AX Wang, Photonic Crystal-Enhanced Fluorescence Imaging Immunoassay for Cardiovascular Disease Biomarker Screening with Machine Learning Analysis, Sensors and Actuators B: Chemical, 2019 |
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A Tan, Y Zhao, K Sivashanmugan, K Squire, AX Wang, Quantitative TLC-SERS detection of histamine in seafood with support vector machine analysis, Food Control, 2019 |
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K Sivashanmugan, K Squire, A Tan, Y Zhao, JA Kraai, GL Rorrer, AX Wang, Trace Detection of Tetrahydrocannabinol in Body Fluid via Surface-Enhanced Raman Scattering and Principal Component Analysis, ACS sensors |
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Joseph A. Kraai, Gregory L. Rorrer, A. X. Wang, Highly-porous diatom biosilica stationary phase for thin-layer chromatography, Journal of Chromatography A |
S. Liverman, Q. Wang, YJ Chu, A. Borah, S. Wang, A. Natarajan, A. X. Wang, WiFO: A hybrid communication network based on integrated free-space optical and WiFi femtocells, Computer Communications |
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E. Li, Q. Gao, S. Liverman, Alan X. Wang, "One-volt silicon photonic crystal nanocavity modulator with indium oxide gate", Optics letters 43 (18), 4429-4432 | |
Q. Gao, E. Li, and Alan X. Wang, "Comparative analysis of transparent conductive oxide electro-absorption modulators", Optical Materials Express 8 (9), 2850-2862 | |
K. Squire, X. Kong, P. Leduff, G. L. Rorrer, and A. X. Wang, "Photonic crystal enhanced fluorescence immunoassay on diatom biosilica," Journal of Biophotonics, accepted, e201800009 | |
Ki-Joong Kim, Yujing Zhang, Peter B. Kreider, Xinyuan Chong, Alan X. Wang, Paul R. Ohodnicki Jr., John P. Baltrus, Chih-Hung Chang, “Nucleation and growth of oriented metal-organic framework thin films on thermal SiO2 surface,” Thin Solid Films, Volume 659, 1 August 2018, Pages 24-35 | |
G. H. Albuquerque, K. Squire, A. X. Wang, and G. S. Herman, “Continuous Synthesis of Monodisperse Ag Nanocubes,” ACS Crystal Growth & Design, (2017), DOI: 10.1021/acs.cgd.7b00935 | |
X. Kong, Q. Yu, E. Li, R. Wang, Q. Liu, and A. X. Wang, “Diatomite Photonic Crystals for Facile On-chip Chromatography and Sensing of Harmful Ingredients from Food,” Materials 2018, 11(4), 539; doi:10.3390/ma11040539 | |
Q. Gao, E. Li, and A. X. Wang, “Ultra-Compact and Broad-band Electro-absorption Modulator using Epsilon-Near-Zero Conductive Oxide,” Photonics Research, 6(4), pp.277-281 (2018). | |
E. Li, Q. Gao, R. T Chen, and A. X. Wang, "Ultra-Compact Silicon-Conductive Oxide Nano-Cavity Modulator with 0.02 Lambda-Cubic Active Volume," Nano Letters, 18, pp 1075–1081 (2018) | |
X. Chong, Y. Zhang, E. Li, K-J Kim, P. Ohodnicki, C-H Chang, and A. X. Wang, "Surface-Enhanced Infrared Absorption: Pushing the Frontier for On-Chip Gas Sensing", ACS Sensors, 3, pp 230–238 (2018) | |
X. Kong, X-Y Chong, K. Squire, and A. X. Wang, “Microfluidic Diatomite Analytical Devices for Illicit Drug Sensing with ppb-Level Sensitivity,” Sensors and Actuators B: Chemical, 259, pp.587-595 (2018) |
X-Y Chong, K-J Kim, E. Li, Y. Zhang, P. R. Ohodnicki, C-H Chang, and A. X. Wang, "Plasmonic nano-patch array with integrated metal-organic framework for enhanced infrared absorption gas sensing," IOP Nanotechnology, 28, no. 26LT01 (2017): 26LT01. | |
X. Kong, K. Squire, Y. Liu, B. Wu, L-J Cheng, and A. X. Wang, "Plasmonic Nanoparticles-Decorated Diatomite Biosilica: Extending the Horizon of On-chip Chromatography and Label-Free Biosensing," Journal of Biophotonics, Vol.10, pp.1473-1484 (2017) Featured as the Back Cover of the Issue 11 in 2017 |
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X. Kong, and A. X. Wang, "Nanoliter analyte sensing on hybrid plasmonic-biosilica nanostructured materials," Procedia Technology, Vol.27, pp.27-28 (2017) | |
X. Kong, K. Squire, X. Chong, and A. X Wang, "Ultra-Sensitive Lab-on-a-Chip Detection of Sudan I in Food using Plasmonics-Enhanced Diatomaceous Thin Film," Food Control, Vol.79, pp.258-265 (2017) | |
C. Liu, Z. Wang, E. Li, Z. Liang, S. Chakravarty, X. Xu, A. X. Wang, and R. T. Chen, D. L. Fan,"Electrokinetic-Manipulation Integrated Plasmonic-Photonic Hybrid Raman Nanosensors with Dual Enhanced Sensitivity," ACS Sensors, Vol.2, pp.346-353 (2017) Appeared as the Front Cover of the Issue 3 in 2017 |
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Q. Gao, S. Liverman, and A. X. Wang, "Design and Characterization of High Efficiency Nanoantenna Couplers with Plasmonic Integrated Circuit," IEEE Journal of Lightwave Technology, Vol.35, 3182-3188 (2017) | |
X. Kong, Y. Xi, P. Le Duff, X. Chong, F. Ren, G. L. Rorrer, and A. X. Wang, "Detecting explosive molecules from nanoliter solution: a new paradigm of SERS sensing on hydrophilic photonic crystal biosilica," Biosensors and Bioelectronics, Vol.88, pp.63-70 (2017) |
X. Kong, K. Squire, E. Li, P. LeDuff, G. L. Rorrer, S. Tang, B. Chen, C. McKay, R. Navarro-Gonzalez, and A. X. Wang, "Chemical and Biological Sensing using Diatom Photonic Crystal Biosilica with In-Situ Growth Plasmonic Nanoparticles", IEEE Transactions on Nanobioscience, Vol.15, pp.828-834 (2016) | |
S. Tang, B. Chen, C. P. McKay, R. Navarro-Gonzalez, and A. X. Wang, "Detection of Trace Organics in Martian Soil Analogs Using Fluorescence-free Surface Enhanced Raman Spectroscopy," Optics Express, Vol.24, 22104-22109 (2016) | |
X. Kong, Y. Xi, P. Le Duff, E. Li, Y. Liu, L-J Cheng, G. L. Rorrer, H. Tan, A. X. Wang, "Optofluidic Sensing from Inkjet-Printed Droplets: the Enormous Enhancement by Evaporation-Induced Spontaneous Flow on Photonic Crystal Biosilica," Nanoscale, Vol.8, pp.17285-94, (2016) | |
R. Ravichandran, A. X. Wang, and J. F. Wager, “Solid State Dielectric Screening Versus Band Gap Trends and Implications”, Optical Materials, Vol.60, 181-187 (2016) | |
X. Chong, E. Li, K. Squire, and A. X. Wang, "On-chip Near-infrared Spectroscopy of CO2 using High Resolution Plasmonic Filter Array," Applied Physics Letters, 108, 221106 (2016) | |
X-Y Chong, K-J Kim, E. Li, Y. Zhang, P. R. Ohodnicki, C-H Chang, and A. X. Wang, "Near-Infrared Absorption Gas Sensing with Metal-Organic Framework on Optical Fibers,” Sensors &Actuators: B. Chemical, Vol.232, 43-51 (2016) | |
E. Li, X. Chong, F. Ren, and A. X. Wang, "Broadband on-chip near-infrared spectroscopy based on plasmonic grating filter array," Optics Letters, Vol.41, 1913-1916 (2016) | |
Q. Gao, F. Ren, A. X. Wang, "Direct and Efficient Optical Coupling into Plasmonic Integrated Circuits from Optical Fibers," IEEE Photonics Technology Letters, Vol.28, 1165-1168 (2016) |
K-Y Kim, X-Y Chong, F. Ren, and A. X. Wang, "Slow-light effect via Rayleigh anomaly and the effect of finite gratings," Optics Letters, Vol.40, No.22, 5339-5342 (2015) | |
F. Ren, K-Y Kim, X-Y Chong, and A. X. Wang, “Effect of finite metallic grating size on Rayleigh anomaly-surface plasmon polariton resonances,” Optics Express, 23, no. 22, 28868-28873 (2015). | |
K-Y Kim, and A. X. Wang, "Spin angular momentum of surface modes from the perspective of optical power flow", Optics Letters, Vol. 40, Issue 12, pp. 2929-2932 (2015) | |
A. X. Wang, Xianming Kong, “Review of Recent Progress of Plasmonic Materials and Nano-Structures for Surface-Enhanced Raman Scattering,” MDPI Materials, 8(6), 3024-3052 (2015) | |
X. Chong, K-J Kim, E. Li, P. R. Ohodnicki, C-H Chang, and A. X. Wang, "Ultra-Short Near-Infrared Fiber-Optic Sensors for Carbon Dioxide Detection", IEEE Sensors, 10.1109/JSEN.2015.2438063 (2015) | |
F. Ren, M. Li, Q. Gao, William Cowell, III, J. Luo, A. K-Y Jen, A. X. Wang, "Surface-Normal Plasmonic Modulator using Sub-Wavelength Metal Grating on Electro-Optic Polymer Thin Film," Optics Communication, Vol. 352, pp. 116–120 (2015) | |
Z. Wang, H. Yan, S. Chakravarty, H. Subbaraman, X. Xu, D.L. Fan, A. X. Wang, and R. T. Chen, "Microfluidic channels with ultralow-loss waveguide crossings for various chip-integrated photonic sensors," Optics Letters, Vol.40, 1563-1566 (2015) | |
K-J Kim, X. Chong, P. B. Kreider, G. Ma, P. R. Ohodnicki, J. P. Baltrus, A. X. Wang, and C-H Chang, "Plasmonics-enhanced metal-organic framework nanoporous films for highly sensitive near-infrared absorption", Journal of Materials Chemistry C, DOI: 10.1039/ C4TC02846E (2015) | |
J. Yang, Z. Le, F. Ren, J. Campbell, G. L. Rorrer, A. X. Wang, “Ultra-Sensitive Immunoassay Biosensors using Hybrid Plasmonic-Biosilica Nanostructured Materials,” Journal of Biophotonics, Vol. 8, 659-667 (2015) |
J. Yang, F. Ren, X-Y Chong, D-L Fan, S. Chakravarty, Z. Wang, R. T, Chen, A. X. Wang, “Guided-mode resonance gratings on indium-tin-oxide thin film for surface-enhanced Raman scattering spectroscopy,” MDPI Photonics 2014, 1, 380-389. DOI: 10.3390/ photonics1040380 | |
K-Y Kim, and A. X. Wang, "Relation of the angular momentum of surface modes to the position of their power-flow center", Optics Express, Vol.22, 30184-30190 (2014) | |
F. Ren, F., X-Y Wang, Z. Li, J. Luo, S-H Jang, A K-Y Jen, and A. X. Wang, “Enhanced third harmonic generation by organic materials on high-Q plasmonic photonic crystals,” Optics Express, 22, 20292-20297 (2014) | |
F. Ren, J. Campbell, G. L. Rorrer, and A. X. Wang, "Surface-Enhanced Raman Spectroscopy Sensors from Nano-Biosilica with Self-Assembled Plasmonic Nanoparticles," IEEE Journal of Selected Topics in Quantum Electronics, Special Issue in Nanobiophotonics, 20, 6900806 (2014) |
F. Ren, J. Campbell, X-Y Wang, G. L. Rorrer, and A. X. Wang, "Enhancing surface plasmon resonances of metallic nanoparticles by diatom biosilica," Optics Express 21, 15308-15313 (2013) |
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F. Ren, X-Y Wang, A. X. Wang, “Thermo-Optic Modulation of Plasmonic Bandgap on Metallic Photonic Crystal Slab,” Applied Physics Letters, 102, 181101 (2013) | |
X. B. Xu, H. Li, Dihan Hasan, R. Ruoff, A. X. Wang and D. L. Fan, "Near-Field Enhanced Magnetic Plasmonic Bifunctional Nanotubes for Single Cell Bioanalysis", Advanced Functional Materials, doi: 10.1002/adfm.201203822 (2013) |
X. Zhang, B-S Lee, C-Y Lin, A. X. Wang, and R. T. Chen, "Highly Linear, Broadband Optical Modulator Based on Electro-optic Polymer," IEEE Journal of Photonics, 4, 2214-2228 (2012) | |
Che-Yun Lin, Harish Subbaraman, Amir Hosseini, Liang Zhu, Alan X. Wang, and Ray T. Chen, “Silicon Nanomembrane Based Photonic Crystal Waveguide Array for Wavelength-Tunable True-Time-Delay Lines,” Applied Physics Letters, 101, 051101 (2012) | |
Alan X. Wang, “The Right Choice for Optical Bus Interconnect: Metallic-Hollow-Core- Waveguides or Multimode Polymer Waveguides?” Optical Engineering, 51, 075401 (2012) | |
Xiaobin Xu, Dihan Hasan, Lei Wang, Swapnajit Chakravarty, Ray T. Chen, D. L. Fan, and Alan X. Wang, “Guided-Mode-Resonance-Coupled Plasmonic-Active SiO2 Nanotubes for Surface Enhanced Raman Spectroscopy”, Applied Physics Letters, 100, 191114 (2012) Also appeared as May 21, 2012 issue of Virtual Journal of Nanoscale Science & Technology |
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Che-Yun Lin, Alan X. Wang, and Ray T. Chen, "Coupling loss minimization of slow light slotted photonic crystal waveguides using mode matching with continuous group index perturbation", Optics Letters, 37, 232-234 (2012) |