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Lee, Jongwon
Nanostructured Photonic Devices Lab.
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Highly-nonlinear quantum-engineered polaritonic metasurfaces

Author(s)
Lee, JongwonNookala, NishantGomez-Diaz, J. SebastianTymchenko, MikhailoDemmerle, FredericBoehm, GerhardAmann, Marcus-ChristianAlu, AndreaBelkin, Mikhail A.
Issued Date
2015-08-11
DOI
10.1117/12.2190454
URI
https://scholarworks.unist.ac.kr/handle/201301/35498
Fulltext
http://spie.org/Publications/Proceedings/Paper/10.1117/12.2190454
Citation
SPIE Optics and photonics conference 2015
Abstract
Intersubband transitions in n-doped semiconductor heterostructures allow one to quantum-engineer one of the largest known nonlinear response in condensed matter systems but only for the electric field polarized normal to semiconductor layer. By coupling of a quantum-engineered multi-quantum-well semiconductor layer with electromagnetically-engineered plasmonic elements we may produce ultrathin metasurfaces with giant nonlinear response. Here we experimentally demonstrate metasurfaces designed for second harmonic generation at λ≈9.9 μm with a record-high nonlinear response for condensed-matter systems in infrared/visible spectral range, up to 1.17×106 pm/V. The practical impact of the nonlinear metasurfaces proposed here may be extended to a variety of fields, including THz generation and detection, phase conjugation, and other nonlinear optical processes.
Publisher
SPIE Optics and photonics conference 2015

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