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Yury Tarasievich

Publications and source records attributed to Yury Tarasievich.

2 recordsLinked to original sources

Size dependency for the thermal physical properties of nano-sized objects in representation of Hill's nanothermodynamics

We consider the problem of constructing the size dependence for the thermal physical properties of nano-sized objects, taking specific heat as an example. The base methodology is Hill's nanothermodynamics. Having to abstain from use of the additivity concept leads to the problem of building the generalised (Hill's) partition sum on base of the combinatorial statistics averaging. The generalised (Hill's) partition sum includes a volume-dependent factor, for which we construct a statistical approximation. Thence the expression for the size dependence of thermodynamical potential is constructed, taking Gibbs' free energy as an example. Combining the author-introduced size factor and expressions for specific heat allows us to construct size dependence for the specific heat of nano-scaled object (nanoparticle). Keywords: nanoparticles, nanothermodynamics, size dependence, thermal physics, specific heat

cond-mat.mes-hall

Partition sum in vibron model in case of non-additivity (nano-sized objects)

We consider the problem of building an expression for the partition sum in case of non-additivity (nano-sized objects), in the framework of Hill's nanothermodynamics. Having to use not the additivity concept leads to the problem of building the generalised (Hill's) partition sum on base of the combinatorial statistics averaging. Expressions for the energy of the object are built on base of the vibron (algebraic) method, also using the author's model of size dependency of numbers of structural elements of the object. Next, the combinatorial-statistical averaging is introduced for the Hamiltonian matrix elements. The final result is represented by the expressions for the nano-sized object's individual quantum states' energies and the partition sum allowing the factorisation. Keywords: nanoparticles, nanothermodynamics, vibron model, algebraic method, Lie algebras, combinatorics, compositions

cond-mat.mes-hall