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PhD Thesis by Javier Zaldivar: Magnetic-Impurity-Induced Bound States in B-Bi2Pd

01/02/2020

Javier Zaldivar, Pre-doctoral researcher at the Nanoimaging Group at nanoGUNE, received his PhD at the University of the Basque Country (UPV/EHU) after the defense of his thesis project on the 17 January 2020. His research work, entitled “Magnetic-Impurity-Induced Bound States in B-Bi2Pdhas been developed under the supervision Jose Ignacio Pascual, Ikerbasque Research Professor and group leader of the Nanoimaging group at nanoGUNE. 

 

Nano-imaging of intersubband transitions in few-layer 2D materials

06/09/2018

nanoGUNE participates in a collaboration led by ICFO (further including the Institut Lumière Matière - CNRS, Technical University of Denmark, Max Planck Institute for the Structure and Dynamics of Matter, and the National Graphene Institute), which reports on the first observation of intersubband transitions in 2D materials via scattering scanning near-field optical microscopy. The results published in Nature Nanotechnology pave the way towards an unexplored field in this new class of materials and offer a first glimpse of the physics and technology enabled by intersubband transitions in 2D materials.

Electronic tailoring of graphene nanostructures via on-surface synthesis

28/07/2017

Eduard Carbonell, Pre-doctoral Researcher at the nanoimaging Group at CIC nanoGUNE, received his PhD at the University of the Basque Country (UPV/EHU) after the defense of his thesis project on 28 July 2017. His research work, entitled “Electronic tailoring of graphene nanostructures via on-surface synthesis", has been developed under the supervision of Dr. José Ignacio Pascual, nanoimaging group leader.

Apply for a Basque PhD grant with nanoGUNE

31/05/2018

NanoGUNE, located at the Ibaeta Campus of the UPV/EHU in Donostia – San Sebastián, offers PhD opportunities to graduates in Physics, Chemistry, Engineering, Biology, and related areas to get their PhD degree.

Etorkizuneko materialak 'topologikoak' izango dira

01/07/2017

Wolframio eta teluriozko geruza oso fin bat fisikariek 'isolatzaile topologiko' izenarekin ezagutzen duten material mota bitxia dela ikusi dute. Nature Physics aldizkariak argitaratu ditu CIC nanoGUNE partaide izan duen ikerketaren emaitzak. Bi dimentsioko material honek etorkizun handia izan dezake espintronikaren alor sortuberrian bere propietate fisikoei esker.