George Green Institute for Electromagnetics Research

Publications

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SÓJKA, L., PAJEWSKI, L., SLIWA, M., MERGO, P., BENSON, T. M., SUJECKI, S. and BERES-PAWLIK, E., 2014. Sensing capability of multicore fibre

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SÓJKA, L., TANG, Z., FURNISS, D., SAKR, H., OLADEJI, A., BEREŚ-PAWLIK, E., DANTANARAYANA, H., FABER, E., SEDDON, A. B., BENSON, T. M. and SUJECKI, S., 2014. Broadband, mid-infrared emission from Pr3+ doped GeAsGaSe chalcogenide fiber, optically clad: Optical Materials Optical Materials. 36(6), 1076-1082

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BARNEY, E. R., TANG, Z., SEDDON, A., FURNISS, D., SUJECKI, S., BENSON, T., NEATE, N. and GIANOLIO, D., 2014. The local environment of Dy3+ in selenium-rich chalcogenide glasses: RSC Advances RSC Advances. 4(80), 42364-42371

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OLADEJI, A., SAKR, H., FURNISS, D., TANG, Z., PHILLIPS, A., BENSON, T. M., SEDDON, A. B. and SUJECKI, S., 2014. Photoluminescence modelling of lanthanide doped, low phonon energy glasses

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PETERSEN, C. R., MØLLER, U., KUBAT, I., ZHOU, B., DUPONT, S., RAMSAY, J., BENSON, T., SUJECKI, S., ABDEL-MONEIM, N., TANG, Z., FURNISS, D., SEDDON, A. and BANG, O., 2014. Mid-infrared supercontinuum covering the 1.4-13.3 μm molecular fingerprint region using ultra-high NA chalcogenide step-index fibre Nature Photonics. 8(11), 830-834

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SUJECKI, S., OLADEJI, A., PHILLIPS, A., SEDDON, A. B., BENSON, T. M., SAKR, H., TANG, Z., BARNEY, E., FURNISS, D., SÓJKA, Ł, BEREŚ-PAWLIK, E., SCHOLLE, K., LAMRINI, S. and FURBERG, P., 2014. Theoretical study of population inversion in active doped MIR chalcogenide glass fibre lasers (invited): Optical and Quantum Electronics Optical and Quantum Electronics.

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SUJECKI, S., OLADEJI, A., SOJKA, L., PHILLIPS, A., SEDDON, A. B., BENSON, T. M., SAKR, H., TANG, Z., FURNISS, D., SCHOLLE, K., LAMRINI, S. and FURBERG, P., 2014. Modelling and design of MIR chalcogenide glass fibre lasers (invited)

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SUJECKI, S., OLADEJI, A., PHILLIPS, A., SEDDON, A. B., BENSON, T. M., SAKR, H., TANG, Z., BARNEY, E., FURNISS, D., SÓJKA, Ł, BEREŚ-PAWLIK, E., SCHOLLE, K., LAMRINI, S. and FURBERG, P., 2014. Theoretical study of population inversion in active doped MIR chalcogenide glass fibre lasers (invited): Optical and Quantum Electronics Optical and Quantum Electronics.

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SUJECKI, S., JAVALOYES, J., AEBERHARD, U. and HU, W., 2014. Introduction to the OQE special issue on numerical simulation of optoelectronic devices NUSOD’13: Optical and Quantum Electronics Optical and Quantum Electronics. 46(10), 1187

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SUJECKI, S., OLADEJI, A., SOJKA, L., PHILLIPS, A., SEDDON, A. B., BENSON, T. M., SAKR, H., TANG, Z., FURNISS, D., SCHOLLE, K., LAMRINI, S. and FURBERG, P., 2014. Modelling and design of MIR chalcogenide glass fibre lasers (invited) In: 2014 14th International Conference on Numerical Simulation of Optoelectronic Devices (NUSOD). 111-112

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MACKENZIE, R. C. I., GÖRITZ, A., GREEDY, S., VON HAUFF, E. and NELSON, J., 2014. Theory of Stark spectroscopy transients from thin film organic semiconducting devices: Physical Review B - Condensed Matter and Materials Physics Physical Review B - Condensed Matter and Materials Physics. 89(19),

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KATO, T., KAMATA, K., CHEN, C., GREEDY, S., BENSON, T. and ANADA, T., 2014. A Numerical Study on 2D Photonic Crystal Devices for Millimeter and Terahertz Wave Applications In: Progress in Electromagnetics Research Symposium (PIERS).
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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