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- From: SIMON Ferenc <simon AT esr.phy.bme.hu>
- To: fizinfo <fizinfo AT lists.kfki.hu>, mfhb <mfhb AT wigner.bme.hu>
- Subject: [Fizinfo] MEGHIVO, Prof. H. Kuzmany eloadasaira
- Date: Mon, 14 May 2012 18:48:14 +0200 (CEST)
- List-archive: <http://mailman.kfki.hu/pipermail/fizinfo>
- List-id: ELFT HÍRADÓ <fizinfo.lists.kfki.hu>
MEGHIVO
A BME Fizika Tanszek eloadassorozatara:
Prof. Hans Kuzmany
(University of Vienna)
Physics of Carbon Nanophases and Related Materials
Idopontok:
2012. május 22, 10.00-12.00 BME K epulet KF82
2012. május 23, 10.00-12.00 BME K epulet KF82
2012. május 24, 10.00-12.00 BME F epulet I. lepcsohaz, I. emelet Schay terem
2012. május 25, 10.00-12.00 BME F epulet I. lepcsohaz, I. emelet Schay terem
Megkozelites: http://portal.bme.hu/terkep.aspx (KF82: K epulet alagsor/foldszint)
Kivonat es rovid leiras:
Hans Kuzmany a szilardtest-spektroszkopia egyik meghatarozo szemelyisege, leginkabb a "Solid-State Spectroscopy: An Introduction" c. konyverol ismert. Eloadassorozatanak kivonata:
1. Introduction
1.1 Why carbon nanophases
1.2 Content in more detail
1.3 Carbon atom, free and bonded
2. Classical Carbon Phases
2.1 Solid state carbon
2.2 Diamond
2.3 Graphite
2.4 Noncrystalline carbon (includes D-line)
3. Classical Carbon Nanostructures
3.1 Nanocrystallin diamond
3.2 Molecular graphite
4. Fullerenes
4.1 Historical background
4.2 Preparation and molecular structure
4.3 Crystal structure, electronic structure, phase transitions,
4.4 Doping C60, simple fullerene salts
4.5 Polymeric phases
4.6 Fulelrene salts, magnetic fullerenes, functionalization
4.7 higher fullerenes, endohedral fullerenes
5. Carbon Nanotubes (CNTs)
5.1 Basic properties
5.2 Theory
5.3 Preparation
5.4 Characterization
5.5 Special properties: Raman scattering
5.6 CNT electronics and transport
5.7 The inside of carbon nanotubes
5.8 Applications of CNTs
5.8.1 Progress in lithography
5.8.2 NT electrics and electro-optics
5.8.3 CNT electronics and sensors
5.8.4 Single tube mechanics
5.8.5 Compound materials
5.8.6 CNTs in biology
6. Graphene
6.1 Field effect and magneto-transport in graphene
6.2 The quantum Hall effect, Landau levels (remainder)
6.3 Massless Dirac fermions
6.4 Characterization of few layer graphene
6.5 Graphene technology
6.6 Graphene, recent results (FQHE, Klein Paradoxon, bi-layer & tri-layer graphene, etc.)
7. Topological Insulators
7.1 Concept of TI
7.2 Experiments
8. Summary
8.1 Summary fullerenes
8.2 Summary CNTs
8.3 Summary graphene and TI
----------------------------
Prof. Ferenc SIMON
egyetemi tanar (professor) @ BUTE
&
venia docendi (privatdozent) @ Uni Wien
http://dept.phy.bme.hu/staff/simon/simon.html
&
http://homepage.univie.ac.at/Ferenc.Simon/
skype: ferisimon
INSTITUTE of PHYSICS
Department of Physics
Budapest University of Technology and Economics
H 1521 Budapest POBox 91 HUNGARY
ph. lab.1: (36-1) 463-1215
ph. lab.2: (36-1) 463-1948
ph. office: (36-1) 463-3816
ph. secr.(hung. only) : (36-1) 463-2312
fax: (36-1) 463-4180
mob.: 36-30-452-4705
- [Fizinfo] MEGHIVO, Prof. H. Kuzmany eloadasaira, SIMON Ferenc, 05/14/2012
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