Dr. Vladimir Kytin

Profile

Academic positionAssociate Professor, Senior Lecturer, Reader
Research fieldsExperimental Condensed Matter Physics
Keywordselectrical transport, porous and nanosize semiconductors, thermoelectricity

Current contact address

CountryRussian Federation
CityMoscow
InstitutionMoscow M.V. Lomonosov State University
InstituteFaculty of Physics, Low Temperature Physics Department

Host during sponsorship

Prof. Dr. Frederick KochPhysik-Department E 16, Technische Universität München, Garching
Start of initial sponsorship01/05/2000

Programme(s)

1999Humboldt Research Fellowship Programme

Publications (partial selection)

2003Vladimir Kytin, Alexander Petrov, Viktor Timoshenko, Vitalii Parkhutik, Pavel Kashkarov, Josef Weidmann, Frederick Koch, Thomas Dittrich: Photoassited electrical transport in porous TiO2. In: physica status solidi (a), 2003, 487-491
2003Vladimir Kytin, Horea Porteanu, Oleg Loginenko, Thomas Dittrich, Elisaveta Konstantinova, Viktor Timoshenko, Frederick Koch, Pavel Kashkarov: The role of inter- and intraparticle transport for microwave photoresponse in nanocrystalline semiconductors. In: physica status solidi (a), 2003, 257-262
2002Elisaveta Konstantinova, Viktor Timoshenko, Pavel Kashkarov, Vladimir Kytin, Vladimir Gaivorunskii, Horea Porteanu, Thomas Dittrich, Frederick Koch Microwave photoconductivity in nanocrystalline porous titanium oxide subjected to pulsed laser excitation. In: Semiconductors, 2002, 319
2002Thomas Dittrich, Volodymir Duzhko, Frederick Koch, Vladimir Kytin, Joerg Rappich: Trap limited photovoltage in ultrathin metal oxide layers. In: Physical Review B, 2002, 155319
2001Vladimir Kytin, Thomas Dittrich, Frederick, Koch, Erick Lebedev: Injection currents and effect of negative capacitance in porous TiO2. In: Applied Physics Letters, 2001, 108
2001Vladimir Kytin, Thomas Dittrich: Injection currents into porous TiO2. In: physica status solidi (a), 2001, 461-470
2001Vladimir Kytin, Volodymir Duzhko, Viktor Timoshenko, Joerg Rappich, Th. Dittrich: Injection photovoltage in thin anodic TiO2 layers. In: physica status solidi (a), 2001, R1-R3