Research project

Portfolio Grant - Nano Photonics

Project overview

The new field of NanoPhotonics emerges when we force light to interact with nano-structures, artificial matter engineered and arranged on the scale of only billionths of a meter. Crossing the quantum bridge between nano and photonics produces a remarkable range of new materials and phenomena. NanoPhotonics promises captivating new fundamental physics, and new mind-blowing applications in low power, ultra-small devices performing at the quantum edge in a wide range of technologies, from information processing and telecommunications, to defense, security, medicine andbiotechnologies. Our leading reputation and proven nano-innovation track record, significant critical mass of steady funding, modern infrastructure and research personnel of the highest international calibre, recently created fabrication and test facilities at ¾ÅÉ«ÊÓÆµ, together with our involvement in major European projects and considerable and increasing interest from industry justifies the perfect timing for consolidating NanoPhotonics research in ¾ÅÉ«ÊÓÆµ into a Portfolio Grant.We will focus our research in the following main directions:Nano-Photonics of the Ultra-Small: emission and absorption of light from nanoparticles and nano-structures.Nano-Photonics of the Artificial: man-made meta-materials with 'ultimate' electromagnetic properties only available in artificial structures.Nano-Photonics of the Sensitive: Nanostructures whose optical spectra change radically when a single molecule attaches, or a nanoparticle at its most critically sensitive state undergoes a structural transformation.Nano-Photonics of the Self-organised: light interacting and shaping 2D & 3D nano-structures, light-assisted self assembly and growth of nano-structures, new Nano-Materials.Nano-Photonics of Trapped Light: confining and enhancing light in the smallest possible nano-cavity dimensions, extremely-large controllable interactions between light and matter.Nano-Photonics of the Flat: Nano-patterns that twist the polarisation of light, and new physics of light trapped in flat nano-structures.Nano-Photonics of Complexity: optics of fractals & quasi-periodic structures (such as Penrose tilings).Nano-Photonics of the Quantum: Switching between discrete states of nano-matter, quantum phase transitions and quantum information processing.

Staff

Lead researchers

Professor Nikolay Zheludev

Professor of Physics & Astronomy
Connect with Nikolay

Collaborating research institutes, centres and groups

Research outputs

John D. Mills, Tipsuda Chaipiboonwong, William S. Brocklesby, Martin D.B. Charlton, Majd E. Zoorob, Caterina Netti & Jeremy J. Baumberg, 2006, Optics Letters, 31(16), 2459-2461
DOI:
Type: article
A. V. Krasavin, K. F. MacDonald, A. S. Schwanecke & N. I. Zheludev, 2006, Applied Physics Letters, 89(3), 31118
DOI:
Type: article
M. Reichelt, S.W. Koch, A.V. Krasavin, J.V. Moloney, A.S. Schwanecke, T. Stroucken, E.M. Wright & N.I. Zheludev, 2006, Applied Physics B: Lasers and Optics, 84(1-2), 97-101
DOI:
Type: article
M.V. Bashevoy, F. Jonsson, A.V. Krasavin, N.I. Zheludev, Y. Chen & M. I. Stockman, 2006, Nano Letters, 6(6), 1113-1115
DOI:
Type: article
Nikolay Zheludev, Mark Stockman & Anatoly Zayats, 2006, Journal of Optics A: Pure and Applied Optics, 8(4)
DOI:
Type: article
Nikolay I. Zheludev, 2006, Journal of Optics A: Pure and Applied Optics, 8(4), S1-S8
DOI:
Type: article
V.A. Fedotov, A.V. Rogacheva, S.L. Prosvirnin, P.L. Mladyonov & N.I. Zheludev, 2006, Applied Physics Letters, 88(2006), 091119-091121
DOI:
Type: article