Items where Author is "Hillier, JA"

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Number of items: 7.

Journal article

NAVARRO‐ARENAS, J., HOWE, T.M., PARRA, J., KOUTSOGEORGIS, D.C., HILLIER, J.A., KALFAGIANNIS, N. and SANCHIS, P., 2025. Local tuning of the epsilon‐near‐zero condition in hybrid silicon waveguides using reactive laser annealing. Advanced Photonics Research. ISSN 2699-9293

VITALI, V., BOTTRILL, K.R.H., DOMÍNGUEZ BUCIO, T., LIU, H., LUQUE GONZÁLEZ, J.M., ORTEGA-MOÑUX, A., CHURCHILL, G., GATES, J.C., HILLIER, J.A., KALFAGIANNIS, N., MELATI, D., SCHMID, J.H., CRISTIANI, I., CHEBEN, P., WANGÜEMERT-PÉREZ, J.G., MOLINA-FERNÁNDEZ, Í., GARDES, F., LACAVA, C. and PETROPOULOS, P., 2024. L- to U-band wavelength conversion of QPSK signals using intermodal four-wave mixing. IEEE Photonics Technology Letters, 36 (16), pp. 1009-1012. ISSN 1041-1135

HILLIER, J.A., PATSALAS, P., KARFARDIS, D., CRANTON, W., NABOK, A.V., MELLOR, C.J., KOUTSOGEORGIS, D.C. and KALFAGIANNIS, N., 2022. Reactive laser annealing of indium tin oxide: implications to crystal structure, defect composition, and plasma energy. Optical Materials Express, 12 (11), pp. 4310-4327. ISSN 2159-3930

SUN, K., WHEELER, C., HILLIER, J.A., YE, S., ZEIMPEKIS, I., URBANI, A., KALFAGIANNIS, N., MUSKENS, O.L. and DE GROOT, C.H., 2022. Room temperature phase transition of W‐doped VO₂ by atomic layer deposition on 200 mm Si wafers and flexible substrates. Advanced Optical Materials: 2201326. ISSN 2195-1071

HILLIER, J.A., PATSALAS, P., KARFARIDIS, D., CAMELIO, S., CRANTON, W., NABOK, A.V., MELLOR, C.J., KOUTSOGEORGIS, D.C. and KALFAGIANNIS, N., 2022. Photo-engineered optoelectronic properties of indium tin oxide via reactive laser annealing. Scientific Reports, 12: 14986. ISSN 2045-2322

HILLIER, J.A., CAMELIO, S., CRANTON, W., NABOK, A.V., MELLOR, C.J., KOUTSOGEORGIS, D.C. and KALFAGIANNIS, N., 2020. When ellipsometry works best: a case study with transparent conductive oxides. ACS Photonics. ISSN 2330-4022

Thesis

HILLIER, J.A., 2021. Photo-engineered optoelectronic properties of transparent conductive oxides via reactive laser annealing (ReLA): the consequence of defects. PhD, Nottingham Trent University.

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