BULLETIN OF THE LEBEDEV PHYISICS INSTITUTE
P.N.Lebedev Physics Institute of the Russian Academy of sciences

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1. Title:
EXCHANGE INTERACTION AND A COMPLETE MAGNETIZATION OF THE MULTISPIN NANOCLUSTER Mn4
Authors:
A.K. Zvezdin.



Abstract:


2. Title:
DUST PARTICLE RECOMBINATION INTERACTION FORCE IN PLASMA
Authors:



Abstract:


3. Title:
VORTEX STRUCTURES OF JOSEPHSON JUNCTION AND THE MAGNETICALLY COUPLED WAVEGUIDE
Authors:
A.S. Malishevskii, V.P. Silin, S.A. Uryupin, S.G. Uspenskii.



Abstract:


4. Title:
NUMERICAL SIMULATION OF HIGH-PRESSURE MICROWAVE PLASMA SOURCE BASED ON THE ELECTRON CYCLOTRON RESONANCE
Authors:
A.V. Arsenin, V.G. Leiman, A.A. Rukhadze, V.P. Tarakanov.



Abstract:


5. Title:
ON THE THEORY OF SUPERFINE STRUCTURE OF ATOMIC SPECTRA
Authors:
V.P. Makarov.



Abstract:


6. Title:
BACKWARD TRANSITION RADIATION GENERATED ON TWO SEQUENTIALLY INSTALLED GRATINGS
Authors:
A.M. Bolotovsky, A.V. Serov.



Abstract:
Transition radiation arising as a result of a sequential crossing by an electric charge of two gratings made of parallel metallic wires is considered. The grating planes are parallel to each other and perpendicular to the direction of charge motion. The directions of the conductors of the first grating are perpendicular to those of the second one. As was shown previously in [1], transition radiation generated by this grating system corresponds to an elliptically polarized wave. In the same study, transition radiation directed forward with respect to the charge motion was analyzed. In the present paper, backward transition radiation is considered. The intensity of forward and backward transition radiation is shown to be comparable with each other. However, close values of radiation polarization parameters (polarization ellipsis and rotation direction) can be obtained for significantly lesser spacings between the gratings. This makes it possible to noticeably reduce the size of transition-radiation generators.


7. Title:
FIELD TRANSFORMATION IN THE EXTENDED SPACE MODEL − PREDICTION AND A REPETITIVE TEST EXPERIMENT
Authors:
A.Y. Tsipenyuk.



Abstract: