Projects per year
Abstract
In recent years, unconventional metamaterial properties have triggered a revolution of electromagnetic research which has unveiled novel scenarios of wave-matter interaction. A very small dielectric permittivity is a leading example of such unusual features, since it produces an exotic static-like regime where the electromagnetic field is spatially slowly-varying over a physically large region. The so-called epsilon-near-zero metamaterials thus offer an ideal platform where to manipulate the inner details of the “stretched” field. Here we theoretically prove that a standard nonlinearity is able to operate such a manipulation to the point that even a thin slab produces a dramatic nonlinear pulse transformation, if the dielectric permittivity is very small within the field bandwidth. The predicted non-resonant releasing of full nonlinear coupling produced by the epsilon-near-zero condition does not resort to any field enhancement mechanism and opens novel routes to exploiting matter nonlinearity for steering the radiation by means of ultra-compact structures.
Original language | English |
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Pages (from-to) | 517-525 |
Journal | Laser & Photonics Reviews |
Volume | 10 |
Issue number | 3 |
Early online date | 13 Apr 2016 |
DOIs | |
Publication status | Published - May 2016 |
Keywords
- Nonlinear Dynamics
- Nonlinear optics
- Metamaterials
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Dive into the research topics of 'Enhanced nonlinear effects in pulse propagation through epsilon-near-zero media'. Together they form a unique fingerprint.Projects
- 1 Finished
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METAFLEX-Metamaterials on Flexible: METAFLEX-Metamaterials on Flexible optically transparent substrate
Di Falco, A. (PI)
1/08/10 → 31/07/15
Project: Fellowship
Datasets
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Data underpinning - Enhanced nonlinear effects in pulse propagation through epsilon-near-zero media
Ciattoni, A. (Creator), Rizza, C. (Creator), Marini, A. (Creator), Di Falco, A. (Creator), Faccio, D. (Creator) & Scalora, M. (Creator), University of St Andrews, 19 Apr 2016
DOI: 10.17630/7b0d7488-07a6-4429-8e84-eb363a703897
Dataset
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