Modeling Of Electronic Thermal Conductivity In Quasi-One-Dimensional Organic Crystals
Închide
Articolul precedent
Articolul urmator
123 1
Ultima descărcare din IBN:
2024-01-04 11:36
SM ISO690:2012
KASIYAN, Anatolie, BALMUŞ, Ion, DASHEVSKY, Zinovi, DUSHCHAC, Viorel, DUŞCIAC, Radu. Modeling Of Electronic Thermal Conductivity In Quasi-One-Dimensional Organic Crystals. In: Microelectronics and Computer Science: The 6th International Conference, Ed. 6, 1-3 octombrie 2009, Chisinau. Bălți, Republica Moldova: Universitatea de Stat „Alecu Russo" din Bălţi, 2009, Ediţia 6, pp. 206-210. ISBN 978-9975-45-122-2.
EXPORT metadate:
Google Scholar
Crossref
CERIF

DataCite
Dublin Core
Microelectronics and Computer Science
Ediţia 6, 2009
Conferința "Microelectronics and Computer Science"
6, Chisinau, Moldova, 1-3 octombrie 2009

Modeling Of Electronic Thermal Conductivity In Quasi-One-Dimensional Organic Crystals


Pag. 206-210

Kasiyan Anatolie1, Balmuş Ion1, Dashevsky Zinovi2, Dushchac Viorel1, Duşciac Radu1
 
1 Technical University of Moldova,
2 Ben-Gurion University of the Negev
 
 
Disponibil în IBN: 12 iulie 2023


Rezumat

The electronic thermal conductivity is modeled in quasi-one-dimensional organic crystals with the parameters of TCNQ chains in the TTF-TCNQ crystals. Two more important electron-phonon interactions and the scattering on impurity are taken into account. The influence of interference of both electron-phonon interactions on electronic thermal conductivity is investigated. The dependences of electronic thermal conductivity on Fermi energy are analyzed for crystals with different degree of purity and different intensity of the interference. It is shown that the electronic thermal conductivity has a maximum, the position and the value of which strongly depend on crystal parameters.

Cuvinte-cheie
electronic thermal conductivity, interference of electron-phonon interactions, quasi-onedimensional organic crystals, relaxation time, Wiedemann-Franz law