SearcharxivSearch

arXiv subjects

V. A. Kuz'menko

Publications and source records attributed to V. A. Kuz'menko.

At least 19 recordsLinked to original sources

Should physicists begin experimental study of the God's physical nature?

Inequality of forward and reversed processes in quantum physics means an existence of a memory of quantum system about the initial state. Importance of its experimental study for correct interpretation of quantum mechanics and understanding of a physical base of a consciousness is discussed.

physics.gen-ph

Comment on "Cooling atoms with a moving one-way barrier"

E.A. Schoene et al., in arXiv:1012.3207 [Phys. Rev.A, 82, 023419 (2010)] give incorrect interpretation of their experimental results. Really we observe a temporary capture and additional cooling of atoms in the presence of the orthogonal laser beam. Any strong potential barriers are absent here. It may be easily experimentally tested.

physics.gen-ph

Comment on "Entropy production and the arrow of time"

J.M.R. Parrondo at al. in arXiv:0904.1573 continue numerous efforts to unify the concepts of the arrow of time and entropy production with the concept of time invariance in physics. This is a wrong way.

physics.gen-ph

Time reversal noninvariance in quantum mechanics and in nonlinear optics

The experimental proofs of strong time invariance violation in optics are discussed. Time noninvariance is the only real physical base for explanation the origin of the most phenomena in nonlinear optics. The experimental study of forward and reversed transitions in oriented in uniform electric field molecules is proposed.

physics.gen-ph

Coherency is the ether of XXI century

The concept of coherent states in explanation of a nature of nonlinear phenomena in optics will be inevitably replaced by the concept of inequality of forward and reversed transitions.

physics.optics

Physical origin of "laser induced" molecule alignment effect

The alternative to dynamic alignment explanation of experimental results on spatial-asymmetric dissociation of molecules in a laser field is proposed. The concept of geometrical alignment is sufficient for explanation of these results. In this case the spatial anisotropy of interaction of molecules with laser radiation is transferred from one field to another through the ordinary mechanism of nonlinear optical interactions. Thus laser radiation does not create alignment, but only registers it. A physical basis of such nonlinear processes is inequality of forward and reversed optical transitions that corresponds to a concept of time invariance violation in electromagnetic interactions. Directions of the further researches in the field of alignment spectroscopy are discussed.

physics.optics

Physical origin of nonlinear phenomena in optics

The physical nature of numerous of the nonlinear phenomena in optics is explained by inequality of forward and reversed optical transitions, that corresponds to a principle of time invariance violation in electromagnetic interactions. The direct and indirect experimental proofs of such inequality and direction of the further researches are discussed.

physics.optics

On the physical nature of the electromagnetic induced transparency effect

The origin of the electromagnetic induced transparency (EIT) effect is explained not as the vanish of atom-field interaction, but as the growing of stimulated emission process due to the efficient four- photon mixing, which allows the atom to return in the initial state. We point out the importance of creation the new mathematical model for description the dynamics of optical transitions, which should be based on the concept of the time invariance violation in electromagnetic interactions.

physics.optics

Alternative explanation of the nature of line clumps

It is assumed, that the clumps of lines do not connected with states mixing and IVR, but they are the result of breaking (destruction) of the process of averaging of momentum of inertia of molecules during the vibration motion of atoms. Rough estimates of the widths of clumps of lines in absorption spectra of some acetylenic derivatives were made with this model. Obtained results are in a satisfactory agreement with the available experimental data. This idea allows also in principle to explain the origin of intensive wings of lines, the existence of which was discussed earlier.

physics.optics