Hümeyra Çağlayan, Ph.D.
Affiliations: | Department of Experimental Optics and Photonics | Tampere University |
Area:
Metamaterials, plasmonics, quantum nanophotonicsWebsite:
https://research.tuni.fi/metaplasmonics/Google:
"Hümeyra Çağlayan"Mean distance: (not calculated yet)
Parents
Sign in to add mentorEkmel Ozbay | grad student | 2010 | Bilkent University | |
(Beaming and localization of electromagnetic waves in periodic structures) | ||||
Nader Engheta | post-doc | Penn |
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Publications
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Ghindani D, Pihlava T, Caglayan H. (2023) Suppressing the spectral shift of a polarization-independent nanostructure with multiple resonances. Optics Letters. 47: 5553-5556 |
Kosger AC, Ghobadi A, Rashed AR, et al. (2021) Generation of additive colors with near unity amplitude using a multilayer tandem Fabry-Perot cavity. Optics Letters. 46: 3464-3467 |
Balci O, Kakenov N, Karademir E, et al. (2018) Electrically switchable metadevices via graphene. Science Advances. 4: eaao1749 |
Sattari H, Rashed AR, Ozbay E, et al. (2017) Bright off-axis directional emission with plasmonic corrugations. Optics Express. 25: 30827-30842 |
Dhama R, Caligiuri V, Petti L, et al. (2017) Extra-Ordinary Effects in Quasi-Periodic Gold Nano-Cavities: Enhanced Transmission and Polarization Control of Cavity Modes. Acs Nano |
Hajian H, Ozbay E, Caglayan H. (2017) Beaming and enhanced transmission through a subwavelength aperture via epsilon-near-zero media. Scientific Reports. 7: 4741 |
ElKabbash M, Rashed AR, Kucukoz B, et al. (2017) Ultrafast transient optical loss dynamics in exciton-plasmon nano-assemblies. Nanoscale |
Serebryannikov AE, Cakmak AO, Colak E, et al. (2014) Multiple slow waves and relevant transverse transmission and confinement in chirped photonic crystals. Optics Express. 22: 21806-19 |
Fafarman AT, Hong SH, Oh SJ, et al. (2014) Air-stable, nanostructured electronic and plasmonic materials from solution-processable, silver nanocrystal building blocks. Acs Nano. 8: 2746-54 |
Paik T, Hong SH, Gaulding EA, et al. (2014) Solution-processed phase-change VO(2) metamaterials from colloidal vanadium oxide (VO(x)) nanocrystals. Acs Nano. 8: 797-806 |