| 2025 |
Zhang, W. Q., Peterkovic, Z., Warren-Smith, S. C., & Afshar V., S. (2025). Unseeded one-third harmonic generation in optical fibers. Optics and Laser Technology, 181(Part A), 111675-1-111675-7. DOI |
| 2024 |
Zhang, W. Q., Capelli, M., Li, S., Johnson, B. C., Greentree, A. D., Reineck, P., . . . Afshar Vahid, S. (2024). Fluorescent emission of NV centers in diamond pillars embedded in optical fibers: optimization using a hybrid model. Optics Express, 32(26), 46062-46079. DOI WoS1 |
| 2024 |
Zhang, W. Q., Nguyen, L. V., Reja, M. I., Lancaster, D. G., & Warren-Smith, S. C. (2024). Multimode Microstructured Optical Fiber Hydrophone. IEEE Sensors Journal, 24(5), 6251-6256. DOI Scopus4 WoS4 |
| 2024 |
Zhang, W. Q., Chan, T. H., & Afshar Vahid, S. (2024). A neural network for forward and inverse nonlinear Fourier transforms for fibre optic communication. Optics and Laser Technology, 176(110971), 1-8. DOI Scopus1 |
| 2023 |
Dong, F. A., Zhang, W. Q., Atakaramians, S., & Shahraam Afshar, V. (2023). Nonreciprocity in optical fiber radiation modes induced by spin-momentum locking. Optics and Laser Technology, 160(article no. 109060), 1-9. DOI |
| 2023 |
Birajdar, S., Zhang, W., Santos, A., Hickson, K., & Vahid, S. A. (2023). Real-time in vivo dose measurement using ruby-based fibre optic dosimetry during internal radiation therapy. Physical And Engineering Sciences In Medicine, 46(3), 1205-1213. DOI Scopus5 WoS6 Europe PMC1 |
| 2023 |
Baghapour, S., Nehema, J., Zhang, W. Q., Warren-Smith, S. C., Hickey, S. M., Plush, S. E., & Afshar Vahid, S. (2023). Surface Functionalised Optical Fibre for Detection of Hydrogen Sulphide. Biosensors, 13(11), 949-1-949-16. DOI Scopus2 WoS2 |
| 2022 |
Zhang, W. Q., Chan, T. H., & Vahid, S. A. (2022). Serial and parallel convolutional neural network schemes for NFDM signals. Scientific Reports, 12(article no. 7962), 1-12. DOI Scopus12 WoS8 Europe PMC2 |
| 2022 |
Zhang, W. Q., Sorvina, A., Morrison, J. L., Darby, J. R. T., Brooks, D. A., Plush, S. E., & Afshar Vahid, S. (2022). Development of an optical fiber-based redox monitoring system for tissue metabolism. Journal of Biophotonics, 15(4, article no, e202100304), 1-11. DOI Scopus2 WoS2 Europe PMC1 |
| 2021 |
Zhang, W. Q. I., Chan, T. H., & Afshar, S. V. (2021). Direct decoding of nonlinear OFDM-QAM signals using convolutional neural network. Optics Express, 29(8), 11591-11604. DOI Scopus10 WoS10 Europe PMC3 |
| 2021 |
Zhang, W. Q., Chan, T. H., & Afshar, V. S. (2021). A correlation propagation model for nonlinear fourier transform of second order solitons. Scientific Reports, 11(1, article no. 2434), 1-9. DOI Scopus1 WoS2 |
| 2019 |
Zhang, W. Q., Gui, T., Zhang, Q., Lu, C., Monro, T. M., Chan, T. H., . . . Afshar Vahid, S. (2019). Correlated eigenvalues of multi-soliton optical communications. Scientific reports, 9(1, article no. 6399), 1-17. DOI Scopus24 WoS20 Europe PMC2 |
| 2019 |
Chen, G. Y., Francois, A., Wu, X., Zhang, W. Q., Codemard, C. A., Xu, H., . . . Lancaster, D. G. (2019). Light-sheet skew-ray enhanced pump-absorption for sensing. Journal of Lightwave Technology, 37(9), 2140-2146. DOI Scopus8 WoS7 |
| 2019 |
Asp, J., Caraça Santos, A. M., Afshar Vahid, S., Qi Zhang, W., & Bezak, E. (2019). Evaluation of silica and PMMA optical fibre response when irradiated with 16.5 MeV protons.. Physica medica : PM : an international journal devoted to the applications of physics to medicine and biology : official journal of the Italian Association of Biomedical Physics (AIFB), 65, 15-20. DOI Scopus8 WoS6 Europe PMC2 |
| 2018 |
Zhang, W. Q., Lancaster, D. G., Monro, T. M., & Vahid, S. A. (2018). Synchronised dual-wavelength mode-locking in waveguide lasers. Scientific reports, 8(1), 1-12. DOI Scopus15 WoS12 |
| 2018 |
Chen, G. Y., Piantedosi, F., Otten, D., Kang, Y. Q., Zhang, W. Q., Zhou, X., . . . Lancaster, D. G. (2018). Femtosecond-laser-written microstructured waveguides in BK7 glass. Scientific reports, 8(article no. 10377), 1-7. DOI Scopus37 WoS31 Europe PMC7 |
| 2017 |
Zhang, W., Gui, T., Zhang, Q., Lu, C., Monro, T. M., Chan, T. H., . . . Shahraam, A. V. (2017). Correlated Eigenvalues Optical Communications.. CoRR, abs/1711.09227. |
| 2016 |
Riesen, N., Zhang, W., & Monro, T. (2016). Dispersion in silica microbubble resonators. Optics Letters, 41(6), 1257-1260. DOI Scopus28 WoS24 Europe PMC10 |
| 2016 |
Riesen, N., Zhang, W., & Monro, T. (2016). Dispersion analysis of whispering gallery mode microbubble resonators. Optics Express, 24(8), 8832-8847. DOI Scopus22 WoS20 Europe PMC6 |
| 2016 |
Khurmi, C., Hébert, N. B., Zhang, W. Q., Afshar V, S., Chen, G., Genest, J., . . . Lancaster, D. G. (2016). Ultrafast pulse generation in a mode-locked Erbium chip waveguide laser. Optics Express, 24(24), 27177-27183. DOI Scopus38 WoS31 Europe PMC7 |
| 2016 |
Yu, J., Feng, Y., Duan, L. N., Li, X. H., Hu, X. H., Zhang, T., . . . Zhao, W. (2016). Quasi-all-fiber high-efficiency divided chirp-pulse amplification system based on active controlling. IEEE photonics journal, 8(1), 1-10. DOI |
| 2015 |
Zhang, W., Skouroumounis, G., Monro, T., & Taylor, D. (2015). Distributed wireless monitoring system for ullage and temperature in wine barrels. Sensors, 15(8), 19495-19506. DOI Scopus17 WoS16 Europe PMC3 |
| 2014 |
Zhang, W., Lohe, M., Monro, T., Bettotti, P., Pavesi, L., & Afshar V, S. (2014). Nonlinear self-polarization flipping in silicon sub-wavelength waveguides: distortion, loss, dispersion, and noise effects. Optics Express, 22(22), 27643-27654. DOI Scopus3 WoS3 Europe PMC1 |
| 2013 |
Zhang, W., Manning, S., Ebendorff-Heidepriem, H., & Monro, T. (2013). Lead silicate microstructured optical fibres for electro-optical applications. Optics Express, 21(25), 31309-31317. DOI Scopus9 WoS8 Europe PMC3 |
| 2013 |
Zhu, X., Li, S., Du, Y., Han, Y., Zhang, W., Ruan, Y., . . . Monro, T. (2013). High stability supercontinuum generation in lead silicate SF57 photonic crystal fibers. Chinese Physics B, 22(1), 1-4. DOI Scopus14 WoS7 |
| 2012 |
Zhang, W., Lohe, M., Monro, T., & Afshar Vahid, S. (2012). Nonlinear Self-Flipping of Polarization States in Asymmetric Waveguides. IEEE Photonics Technology Letters, 24(16), 1453-1456. DOI Scopus5 WoS3 |
| 2012 |
Afshar Vahid, S., Lohe, M., Zhang, W., & Monro, T. (2012). Full vectorial analysis of polarization effects in optical nanowires. Optics Express, 20(13), 14514-14533. DOI Scopus14 WoS10 Europe PMC3 |
| 2011 |
Zhang, W., Ebendorff-Heidepriem, H., Monro, T., & Afshar Vahid, S. (2011). Fabrication and supercontinuum generation in dispersion flattened bismuth microstructured optical fiber. Optics Express, 19(22), 21135-21144. DOI Scopus39 WoS36 Europe PMC5 |
| 2011 |
Zhang, W., Lohe, M., Monro, T., & Afshar Vahid, S. (2011). Nonlinear polarization bistability in optical nanowires. Optics Letters, 36(4), 588-590. DOI Scopus10 WoS7 Europe PMC2 |
| 2010 |
Zhang, W., Sharping, J., White, R., Monro, T., & Afshar Vahid, S. (2010). Design and optimization of fiber optical parametric oscillators for femtosecond pulse generation. Optics Express, 18(16), 17294-17305. DOI Scopus16 WoS12 Europe PMC2 |
| 2009 |
Afshar Vahid, S., Zhang, W., Ebendorff-Heidepriem, H., & Monro, T. (2009). Small core optical waveguides are more nonlinear than expected: experimental confirmation. Optics Letters, 34(22), 3577-3579. DOI Scopus70 WoS59 Europe PMC23 |
| 2009 |
Monro, T., Ebendorff-Heidepriem, H., Zhang, W., & Afshar Vahid, S. (2009). Emerging Nonlinear Optical Fibers: Revised Fundamentals, Fabrication and Access to Extreme Nonlinearity. IEEE Journal of Quantum Electronics, 45(11), 1357-1364. DOI Scopus13 WoS8 |
| 2009 |
Zhang, W., Afshar Vahid, S., & Monro, T. (2009). A genetic algorithm based approach to fiber design for high coherence and large bandwidth supercontinuum generation. Optics Express, 17(21), 19311-19327. DOI Scopus58 WoS51 Europe PMC12 |
| 2008 |
Zhang, W., Afshar Vahid, S., Ebendorff-Heidepriem, H., & Monro, T. (2008). Record nonlinearity in optical fibre. Electronics Letters, 44(25), 1453-1455. DOI Scopus22 WoS15 |
| 2008 |
Ebendorff-Heidepriem, H., Foo, H., Moore, R., Zhang, W., Li, Y., Monro, T., . . . Lancaster, D. (2008). Fluoride glass microstructured optical fiber with large mode area and mid-infrared transmission. Optics Letters, 33(23), 2861-2863. DOI Scopus71 WoS51 Europe PMC7 |