George Green Institute for Electromagnetics Research
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Publications

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SUJECKI, S., SOJKA, L., BERES-PAWLIK, E., ANDERS, K., PIRAMIDOWICZ, R., TANG, Z., FURNISS, D., BARNEY, E., BENSON, T. and SEDDON, A., 2019. Experimental and numerical investigation to rationalize both near-infrared and mid-infrared spontaneous emission in Pr3+ doped selenide-chalcogenide fiber: Journal of Luminescence Journal of Luminescence. 209, 14-20

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SEDDON, A. B., TANG, Z., FURNISS, D., BARNEY, E., SOJKA, L., BENSON, T. M. and SUJECKI, S., 2019. Breaking through the wavelength barrier: State-of-play on rare-earth ion mid-infrared fiber lasers at 4-9 μm

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JAYASURIYA, D., PETERSEN, C. R., FURNISS, D., MARKOS, C., TANG, Z., HABIB, M. S., BANG, O., BENSON, T. M. and SEDDON, A. B., 2019. Mid-IR supercontinuum generation in birefringent, low loss, ultra-high numerical aperture Ge-As-Se-Te chalcogenide step-index fiber: Optical Materials Express Optical Materials Express. 9(6), 2617-2629

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JAIN, D., MARKOS, C., BENSON, T. M., SEDDON, A. B. and BANG, O., 2019. Exploiting dispersion of higher-order-modes using M-type fiber for application in mid-infrared supercontinuum generation: Scientific Reports Scientific Reports. 9(1),

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FANG, Y., FURNISS, D., JAYASURIYA, D., PARNELL, H., TANG, Z. Q., GIBSON, D., BAYYA, S., SANGHERA, J., SEDDON, A. B. and BENSON, T. M., 2019. Methods for determining the refractive indices and thermo-optic coefficients of chalcogenide glasses at MIR wavelengths: Optical Materials: X Optical Materials: X. 2,

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SUJECKI, S., SOJKA, L., BERES-PAWLIK, E., ANDERS, K., PIRAMIDOWICZ, R., TANG, Z., FURNISS, D., BARNEY, E., BENSON, T. and SEDDON, A., 2019. Experimental and numerical investigation to rationalize both near-infrared and mid-infrared spontaneous emission in Pr3+ doped selenide-chalcogenide fiber: Journal of Luminescence Journal of Luminescence. 209, 14-20

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SPIRIDONOV, A. O., KARCHEVSKII, E. M., BENSON, T. M. and NOSICH, A. I., 2019. Why elliptic microcavity lasers emit light on bow-tie-like modes instead of whispering-gallery-like modes: Optics Communications Optics Communications. 439, 112-117

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KUMAR, D. S., CREAGH, S. C., SUJECKI, S. and BENSON, T. M., 2019. Modeling propagation in large deformed step-index fibers using a finite operator method: Journal of the Optical Society of America B: Optical Physics Journal of the Optical Society of America B: Optical Physics. 36(5), 1208-1221

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KUMAR, D. S., CREAGH, S. C., SUJECKI, S. and BENSON, T. M., 2019. Modeling propagation in large deformed step-index fibers using a finite operator method: Journal of the Optical Society of America B: Optical Physics Journal of the Optical Society of America B: Optical Physics. 36(5), 1208-1221

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SHEN, M., FURNISS, D., FARRIES, M., JAYASURIYA, D., TANG, Z., SOJKA, L., SUJECKI, S., BENSON, T. M. and SEDDON, A. B., 2019. Experimental observation of gain in a resonantly pumped Pr3+-doped chalcogenide glass mid-infrared fibre amplifier notwithstanding the signal excited-state absorption: Scientific Reports Scientific reports. 9(1),

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FANG, Y., FURNISS, D., JAYASURIYA, D., PARNELL, H., TANG, Z., SEDDON, A. B. and BENSON, T. M., 2019. Determining the continuous thermo-optic coefficients of chalcogenide glass thin films in the MIR region using FTIR transmission spectra: Optics Express Optics Express. 27(16), 22275-22288

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ZHAO, T., JIA, H., LIAN, Z., BENSON, T. and LOU, S., 2019. Ultra-broadband dual hollow-core anti-resonant fiber polarization splitter: Optical Fiber Technology Optical Fiber Technology. 53,

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PARNELL, H., FURNISS, D., TANG, Z., FANG, Y., BENSON, T. M., CANEDY, C. L., KIM, C. S., KIM, M., MERRITT, C. D., BEWLEY, W. W., VURGAFTMAN, I., MEYER, J. R. and SEDDON, A. B., 2019. High purity Ge-Sb-Se/S step index optical fibers: Optical Materials Express Optical Materials Express. 9(9), 3616-3626

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VUKOVIC, A., SEWELL, P. and BENSON, T. M., 2019. Generating Radome Geometries for Full Lightning Protection Studies

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SUJECKI, S., SOJKA, L., BERES-PAWLIK, E., ANDERS, K., PIRAMIDOWICZ, R., TANG, Z., FURNISS, D., BARNEY, E., BENSON, T. and SEDDON, A., 2019. Experimental and numerical investigation to rationalize both near-infrared and mid-infrared spontaneous emission in Pr3+ doped selenide-chalcogenide fiber: Journal of Luminescence Journal of Luminescence. 209, 14-20
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George Green Institute for Electromagnetics Research

The Faculty of Engineering
The University of Nottingham
Nottingham, NG7 2RD



email: GGIEMR@nottingham.ac.uk