P1-0040 — Annual report 2009
1.
Co-organization of conference

The group has co-organized yearly international conference on nanoscience and nanotechnology SLONANO. Group members are chairing the conference since its begining in 2002.

B.01 Organiser of a scientific meeting

COBISS.SI-ID: 23023143
2.
From self-assembled luttinger liquid networks to bulk composites with MoSI molecular wires

Presented invited talk From self-assembled luttinger liquid networks to bulk composites with MoSI molecular wires

B.04 Guest lecture

COBISS.SI-ID: 23156263
3.
Nanotechnology: from science-fiction to od wood coatings : invited talk

Nanotechnology is a field in which physicists, chemists, biologists, engineers, doctors and other researchers combine their knowledge, imagination and creativity on a level of single atoms or molecules. With rapid development of nanotechnology and nanomaterials in the last few years, we are making large scientific and technological progress. Slovenian scientists have eagerly responded to this challenge and some of their achievements on discovering new nanomaterials and phenomena related to them, as also on their usage in different fields will be presented in the lecture.

B.04 Guest lecture

COBISS.SI-ID: 22902311
4.
Transport properties of electrons in Mo6SxI(9-x) nanowire integrated chips

Doctoral thesis Transport properties of electrons in Mo6SxI(9-x) nanowire integrated chips.

D.09 Tutoring for postgraduate students

COBISS.SI-ID: 2152292
5.
Quasiparticle relaxation dynamics in cuprate and pnictide superconductors : femtosecond optical spectroscopy studies : invited talk.

Presentation of our recent femtosecond-spectroscopy experimental results in the cuprates and pnictides. We find that the relaxation of the photoexcited qusiparticles behaves similar in both systems. Below Tc we observe characteristic components due to the relaxation across the superconducting gap and presence of faster components which are associated with a pseudogap. At high excitation fluences we determined the superconducting-state vaporization-energy density which is 8-16 times larger than the thermodynamic condensation energy implying strong coupling of quasiparticles to phonons.

B.04 Guest lecture

COBISS.SI-ID: 22566951