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PhD Student Mathias Charconnet, Best Paper Award

25/09/2019

Charconnet won the award on the International Conference on Optical MEMS and Nanophotonics. Congratulations!

Quantum nanoscope

09/06/2017

A collaborative work published in Science shows how electrons surf the waves of light on graphene.

Grafenozko plasmoien detekzio elektrikoa terahertzen maiztasunetan

Uhin-luzera izugarri motzetan hedatzen dira terahertzen plasmoiak grafenozko xafla batean, zundazko ekortze-mikroskopio bidez lortutako fotokorrente-irudietan ikus daitekeen bezala.
04/11/2016

Fotokorronteak nanoeskalan behatzeko teknika berri bat garatu du ikerketzaile-talde batek, eta grafenozko fotodetektagailu batean ikaragarri konprimatuta dauden uhin elektromagnetikoak (plasmoiak) terahertzen maiztasunetan behatzeko erabili dute. Plasmoiek uhin-luzera izugarri motza izateak, batetik, eta eremu oso kontzentratuak izateak, bestetik, bide berriak ireki dituzte terahertzen espektro-tartean gailu optoelektroniko miniaturizatuak garatzeko (Nature Nanotechnology DOI: 10.1038/NNANO.2016.185)

 

 

Graphene does double duty for plasmons

01/10/2016

A study by ICFO, CIC nanoGUNE, Columbia University and the National Institute for Materials Science in Japan published in Nature Materials demonstrates how graphene can be employed simultaneously as both a plasmonic medium and detector.

SMALL: Plasmonic Nickel Nanoantennas

16/06/2011

In a recent article (J.Chen at al., Small, doi: 10.1002/smll.201100640) researchers from nanoGUNE have studied the fundamental optical properties of pure nickel nanoantennas. The article has been featured on the cover of the SMALL journal (Volume 7, Issue 16) and on the materials science news site Materials Views. “This study represents a step towards understanding and engineering magnetically controllable optical nanoantennas, which will be extremely useful for many developing technologies including biosensors, lasers, and solar cells”, says Richard Walters in his article “Nickel for Visible-Light Nanoantennas?”.