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K. B. Korotchenko

Publications and source records attributed to K. B. Korotchenko.

8 recordsLinked to original sources

Twisted-photons Distribution Emitted by Relativistic Electrons at the Axial Channeling

Within the framework of quantum electrodynamics, a new method for calculating the radiation of a twisted photon emitted at any angle to the particle velocity has been developed. Using this method, the theory of radiation of a twisted photon by an axially channeled electron at an arbitrary angle to the direction of motion was first created. The twisted-photons angular disibution calculated for the first time

quant-ph

The Single-Photon Annihilation of Channeled Positron in Si Crystal

The differential cross-section of the single-photon annihilation of channeled positron on the K-shell electron of one of the crystal atoms is calculated and angular distribution of emitted photons is investigated. It is shown that cross-section has a complicated dependence on positron entrance angle with respect to crystal plane. It is demonstrated that this orientation dependence is different for different positron transverse energy levels. The dependence of the differential cross-section on the electron longitudinal energy is studied.

quant-ph

The oscillations in the lossy medium

The object of this laboratory work: to explore dependence mass point oscillatory motion parameters in the following cases: - without resistance (free oscillations); - the resistance force is proportional to the velocity vector; - the resistance force is proportional to the velocity squared. Used equipment: the work have doing on a personal computer. The oscillatory motion simulation is carried out by the numerical solution of system of differential equations. This equations describe a motion of a particle under an elastic force action and exterior forces (resistance force) with initial values and parameters being entered during the dialogue with the computer.

physics.ed-ph

The basic principles of geometrization of the quantum mechanics

The basic principles of the quantum mechanics in the K-field formalism (see author's papers) are stated in the paper. K-field formalism arises from geometric generalization of de Broglie postulate. So, the quantum theory equations (including well-known Schrodinger, Klein-Gordon and quadratic Dirac equations) are obtained as the free wave equations on a manifold metrizing force interactions of particles. In this paper, describing wave properties of particles we will restricted ourself with construction special geometric formulation of force interactions.

hep-th

Muon-catalyzed fusion in "warm-fusion"

In this paper formulate the hypothesis that in a molecule $D_2 O$ (in a cluster of heavy water $(D_2 O)_N)$ when its specific energy is of the order of 150 eV one of the molecular bonds $O - D$ is changed into $O - D_μ$ i.e. a molecule $D_2 O$ transforms into a muonic molecule. This postulate is necessary to explain the experiment which was carried out in Brookhaven National Laboratory (USA).

nucl-th

Quantum mechanics in the K-Field formalism: the basic principles of geometrization

The basic principles of the quantum mechanics in the K-field formalism are stated in the paper. The basic distinction of this theory arises from that the quantum theory equations (including well-known Schrodinger, Klein-Gordon and quadratic Dirac equations) are obtained from de Broglie postulate geometric generalization. Rather, they are obtained as the free wave equations on a manifold metrizing force interactions of particles. Such view on the quantum theory basic equations allows one to use semiclassical models for the quantum system simulation. The quantization principle modifies as well. Namely, quantum system stationary conditions are such conditions, at which test particles motion is Lyapunov stable.

quant-ph

The test particle motion equations metrical form in a potential field

It is shown in the present work that the three-dimensional trajectories of an electrical test particle in potential fields may be regarded as geodesic lines lying on isotropic surfaces of some four-dimensional configurational space, the connection of which has tortion, while the transference is nonmetric.

quant-ph