781-786
Nuclear Experimental Technique
A compact separator of monoenergetic electrons
A. I. Kalinin, V. G. Chumin, V. I. Fominykh and Zh. K. Samatov
787-791
Nuclear Experimental Technique
High-pressure thin-wall drift tubes
V. I. Davkov, K. I. Davkov, V. V. Myalkovskiy and V. D. Peshekhonov
792-794
Nuclear Experimental Technique
Background of a “
dE + E
” phoswich detector
A. V. Kladov
795-798
Nuclear Experimental Technique
Use of a scintillator based on an activated paraterphenyl polycrystal as part of a phoswich detector
A. A. Ananenko, L. A. Andryushchenko, Yu. T. Vydai, L. S. Gordienko and T. E. Gorbacheva, et al.
799-804
Application of Computers in Experiments
A system for measuring the electromagnetic characteristics of the KTM tokamak
A. V. Obkhodskii, K. I. Baistrukov, V. M. Pavlov, S. V. Merkulov and Yu. N. Golobokov
805-807
Application of Computers in Experiments
A 32-channel CAMAC module for reading information from multiwire proportional chambers
N. A. Kuchinskii, V. V. Sidorkin and A. V. Solin
808-819
Electronics and Radio Engineering
Switching processes in high-frequency converters
V. V. Togatov, P. A. Gnatyuk and D. S. Ternovskii
820-825
Electronics and Radio Engineering
Signal transmission lines for large-size segmented straw detectors
S. E. Vasilyev, V. I. Davkov, K. I. Davkov, V. V. Myalkovskiy and V. D. Peshekhonov, et al.
826-832
Electronics and Radio Engineering
A capacitor cell of a capacitive energy storage with a switch based on reverse switch-on dynistors
B. E. Fridman, S. V. Korotkov, V. A. Martynenko, R. Sh. Enikeev and N. A. Kovrizhnykh, et al.
833-837
Electronics and Radio Engineering
High-voltage high-current air-filled spark gaps of an artificial-lightning-current generator
M. I. Baranov, G. M. Koliushko, V. I. Kravchenko, O. S. Nedzel’skii and M. A. Nosenko
838-845
Electronics and Radio Engineering
Operating features of a high-voltage spark gap switch with gas blow normal to the breakdown path in a repetitively pulsed mode
N. M. Bykov, A. V. Gunin, S. D. Korovin and Yu. D. Korolev
846-849
Electronics and Radio Engineering
An NMR magnetometer with frequency modulation
E. Yu. Medvedev and Yu. I. Deryabin
850-856
Electronics and Radio Engineering
A terahertz spectrometer with a pulsed high magnetic field
V. B. Anzin, S. P. Lebedev, A. A. Mukhin, O. E. Porodinkov and A. S. Prokhorov, et al.
857-860
General Experimental Techniques
Time-of-flight scintillation spectrometer of charged particles with a subnanosecond time resolution
K. V. Safronov, D. S. Gavrilov, E. S. Mokicheva, A. V. Potapov and O. V. Chefonov
861-864
General Experimental Techniques
A source of short electron bunches for injection into accelerators
N. A. Vinokurov, P. A. Golubev, E. I. Kolobanov, S. A. Krutikhin and G. Ya. Kurkin, et al.
865-870
General Experimental Techniques
Measuring the asymmetry of the longitudinal charge distribution in an electron bunch on the ВЭПП-4М collider
P. A. Bak, D. Yu. Bolkhovityanov, P. V. Logachev, D. A. Malyutin and A. A. Starostenko, et al.
871-874
General Experimental Techniques
Increasing the reliability and service life of the cathode unit of an electron accelerator with extraction of a large-cross-section beam to the atmosphere
T. E. Anisimova and A. N. Malinin
875-885
General Experimental Techniques
Studying the effect of adsorbed molecules on the operation of a diode with an explosive-emission cathode
A. I. Pushkarev and R. V. Sazonov
886-889
General Experimental Techniques
Air-cooled barrier-discharge excilamps
D. V. Schitz, M. V. Erofeev, V. S. Skakun, V. F. Tarasenko and S. M. Avdeev
890-893
General Experimental Techniques
A copper bromide vapor laser with computer control of the repetitive-pulse, train, and waiting operating modes
V. A. Dimaki, V. B. Sukhanov, V. O. Troitskii, A. G. Filonov and D. Yu. Shestakov
894-897
Laboratory Techniques
A diode-laser spectrometer for measuring ortho/para composition of water vapor
P. O. Kapralov, V. G. Artemov, A. M. Makurenkov, V. I. Tikhonov and A. A. Volkov
898-901
Laboratory Techniques
Use of an infrared camera for nondestructive quality inspection of fiber-optic components
O. O. Zaitsev, V. P. Kalinushkin, V. A. Lobachev and V. A. Yuryev