Mirrored split pupil finder11/26/2023 ![]() ![]() 15(3), 263–271 (2016)Ĭhachayma-Farfan, D.J., Radi, Y., Alù, A.: Dual-layer radio-transparent dielectric core metasurface antenna. Papasimakis, N., Fedotov, V.A., Savinov, V., Raybould, T.A., Zheludev, N.I.: Electromagnetic toroidal excitations in matter and free space. Shafiei, F., Monticone, F., Le, K.Q., Liu, X.X., Hartsfield, T., Alù, A., Li, X.: A subwavelength plasmonic metamolecule exhibiting magnetic-based optical Fano resonance. Smith, D.R., Padilla, W.J., Vier, D.C., Nemat-Nasser, S.C., Schultz, S.: Composite medium with simultaneously negative permeability and permittivity. Pendry, J.B., Holden, A.J., Robbins, D.J.: Magnetism from conductors and enhanced nonlinear phenomena”. In: Proceedings of the Asia-Pacific Microwave Conference (2016) Malik, J., Patnaik, A., Kartikeyan, M.V.: Modulated metasurface for circular polarization. 101, 253903 (2008)īukhari, S.S., Vardaxoglou, J.Y., Whittow, W.: A metasurfaces review: definitions and applications. Papasimakis, N., Fedotov, V.A., Zheludev, N.I., Prosvirnin, S.L.: Metamaterial analog of electromagnetically induced transparency. 99, 147401 (2007)Ĭhiam, S.-Y., Singh, R., Rockstuhl, C., Lederer, F., Zhang, W., Bettiol, A.A.: Analogue of electromagnetically induced transparency in a terahertz metamaterial. 19(17), 17997–18002 (2010)įedotov, V.A., Rose, M., Prosvirnin, S.L., Papasimakis, N., Zheludev, N.I.: Sharp trapped-mode resonances in planar metamaterials with a broken structural symmetry. Kim, J., Soref, R., Buchwald, W.R.: Multi-peak electromagnetically induced ransparency (EIT)-like transmission from bull’s-eye shaped metamaterial. Liu, N., Langguth, L., Weiss, T., Kastel, J., Fleischhauer, M., Pfau, T., Giessen, H.: Plasmonic analogue of electromagnetically induced transparency at the Drude damping limit. 97(11) (2010)Ĭhakrabarti, S., Ramakrishna, S.A., Wanare, H.: Coherently controlling etamaterials. 86(15) (2006)ĭong, Z.-G., Liu, H., Cao, J.-X., Li, T., Wang, S.-M., Zhu, S.-N., Zhang, X.: Enhanced sensing performance by the plasmonic analog of electromagnetically induced transparency in active metamaterials. Waks, E., Vuckovic, J.: Dipole induced transparency in drop-filter cavity-waveguide systems. 77, 633 (2005)īajcsy, M., Zibrov, A.S., Lukin, M.D.: Stationary pulses of light in an atomic medium. 96(12) (2006)įleischhauer, M., Imamoglu, A., Marangos, J.P.: Electromagnetically induced transparency: optics in coherent media. This will ensure that allocations of “falling rolls” funding are based on a consistent measure of forecasting future school places, supporting the policy objective of targeting this support to the schools where places will be needed in future.Xu, Q., Sandhu, S., Povinelli, M.L., Shakya, J., Fan, S., Lipson, M.: Experimental realization of an on-chip all-optical analogue to electromagnetically induced transparency. We are also introducing some changes to local authorities’ allocation of funding for schools which have significant declines in pupil numbers – with a requirement that local authorities must use their School Capacity Survey (SCAP) data to assess whether school places will be required in the next three to five years, replacing the current requirement to use local planning assessments. Secondly, we are making funding for schools which see significant increases in their pupil numbers more consistent across the country, by setting minimum levels of additional funding that every eligible school will receive.This replaces the current system whereby only some of these schools receive additional funding, depending on local funding arrangements. This will ensure that funding is allocated consistently and fairly across England, and that all eligible schools attract funding towards the additional costs they face. First, we are reforming funding for schools which operate across more than one site through a national formulaic approach to split sites within the national funding formula.As well as confirmation of our plans for the implementation of the direct NFF, the Government’s response also confirms that the Department will implement two reforms to the schools NFF from 2024-25.: You can read the Government’s response to the consultation in full on the Implementing the Direct National Funding Formula Government consultation response () webpage. ![]()
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