615-636
Techniques for EPR spectroscopy of pulsed electron double resonance (PELDOR): A review
Yu. D. Tsvetkov and Yu. A. Grishin
637-645
Nuclear Experimental Technique
Numerical simulation of the energy spectrum of recoil nuclei and α particles from interactions of fast neutrons with diamond
S. V. Gvozdev, V. V. Frunze and V. N. Amosov
646-654
Nuclear Experimental Technique
An experimental setup for measuring neutron yield from nuclear materials under exposure to bremsstrahlung (a photonuclear method)
M. D. Karetnikov, K. N. Kozlov, E. A. Meleshko, N. A. Tupikin and G. V. Yakovlev, et al.
655-664
Nuclear Experimental Technique
A new position-sensitive silicon pixel detector based on bipolar transistors
D. L. Volkov, D. E. Karmanov, V. N. Murashev, S. A. Legotin and R. A. Mukhamedshin, et al.
665-672
Nuclear Experimental Technique
Effect of γ irradiation on the scintillation and optical properties of lead tungstate crystals
A. N. Vasiliev, Yu. M. Goncharenko, A. M. Davidenko, A. A. Derevschikov and V. A. Kachanov, et al.
673-677
Nuclear Experimental Technique
An HV power supply system for the transition radiation tracker of the ATLAS experiment
K. I. Zhukov, V. A. Kantserov, S. V. Murav’ev and A. P. Shmeleva
678-685
Application of Computers in Experiments
Preliminary tests of high-speed data communications protocol on the “Quasar” VLBI network
I. A. Bezrukov, A. G. Mikhailov and A. I. Sal’nikov
686-694
Application of Computers in Experiments
A digital signal converter for radio astronomical systems
S. A. Grenkov, N. E. Kol’tsov, E. V. Nosov and L. V. Fedotov
695-698
Electronics and Radio Engineering
Dynistors with nanosecond response times
S. V. Korotkov, Yu. V. Aristov, V. B. Voronkov, A. L. Zhmodikov and D. A. Korotkov, et al.
699-702
Electronics and Radio Engineering
Semiconductor switches of laser pumping pulses of nanosecond duration
S. V. Korotkov, Yu. V. Aristov, V. B. Voronkov, A. L. Zhmodikov and A. K. Kozlov, et al.
703-706
Electronics and Radio Engineering
A high-voltage nanosecond pulse generator for exciting diffuse gas discharges at atmospheric pressure
E. G. Krastelev, S. P. Maslennikov and E. Ya. Shkol’nikov
707-711
Electronics and Radio Engineering
A device for continuous remote monitoring of the electric strength of insulating oils
A. I. Gerasimov and V. P. Bubnov
712-720
General Experimental Techniques
The resolution function of a double-crystal X-ray diffractometer
E. M. Pashaev, I. A. Subbotin, M. A. Chuev, V. V. Kvardakov and A. E. Golovanov, et al.
721-724
General Experimental Techniques
A small-size multichannel scanning acoustic microscope
S. A. Titov, R. G. Maev and A. N. Bogachenkov
725-726
Laboratory Techniques
An inertial piezoelectric step drive for subnanosize-accuracy movements
A. M. Lipanov, P. V. Gulyaev, E. Yu. Shelkovnikov and A. V. Tyurikov
727-730
Laboratory Techniques
An experimental setup for obtaining metallic multilayer coatings with layers of nanometer thickness
G. V. Strukov, G. K. Strukova, E. D. Shoo, S. I. Bozhko and Yu. P. Kabanov
731-737
Laboratory Techniques
A compact vapor source of conductive target material sputtered by 3-keV ions at 0.05-Pa pressure
S. N. Grigoriev, Yu. A. Melnik, A. S. Metel, V. V. Panin and V. V. Prudnikov
738-742
Laboratory Techniques
Fast-response thermistors made of synthetic single-crystal diamonds
V. S. Bormashov, S. G. Buga, V. D. Blank, M. S. Kuznetsov and S. A. Nosukhin, et al.
743-746
Laboratory Techniques
Realization of the longitudinal heat flow method for measuring thermal conductivity of solids at high temperatures
E. A. Zhelobtsov, E. Kh. Isakaev, V. E. Peletskii and A. S. Tyuftyaev
747-751
Laboratory Techniques
Control over the symmetry of the heat field in the station for growing LBO crystals by the Kyropoulos method
A. E. Kokh, V. A. Vlezko and K. A. Kokh
752-757
Laboratory Techniques
Parameters optimization of the FRP Dewar intended for biomagnetic investigations
V. Yu. Lyakhno, A. S. Garbuz, L. V. Gnezdilova, A. V. Lopin and V. I. Shnyrkov
758-761
Laboratory Techniques
A 3He cryostat inserted into a refrigerator with an impulse tube
F. Herrmann, R. Herrmann and V. S. Edel’man