719-724
Nuclear Measurement Technique
High-voltage elements of a tandem accelerator with vacuum insulation
I. N. Sorokin and V. V. Shirokov
725-729
Nuclear Measurement Technique
Effect of neutron irradiation on the electrodes of a vacuum photoemission detector
K. Yu. Vukolov, Yu. V. Gott, S. N. Zvonkov and M. M. Stepanenko
730-736
Nuclear Measurement Technique
A measuring complex for time-of-flight spectrometry of fast neutrons
B. V. Zhuravlev, V. G. Demenkov, A. A. Lychagin, P. V. Demenkov and V. I. Trykova, et al.
737-743
Nuclear Measurement Technique
A one-dimensional position-sensitive detector for thermal neutrons
A. V. Belushkin, A. A. Bogdzel’, V. V. Zhuravlev, S. A. Kutuzov and F. V. Levchanovskii, et al.
744-749
Nuclear Measurement Technique
Calibrating the forward calorimeter of the CMS detector using a 60Co radioactive source
N. Akchurin, V. B. Gavrilov, A. A. Krokhotin, S. V. Semenov and A. L. Ul’yanov, et al.
750-756
Nuclear Measurement Technique
The μSR setup on the muon beam of the synchrocyclotron at the Konstantinov Institute of Nuclear Physics
S. G. Barsov, S. I. Vorob’ev, V. P. Koptev, S. A. Kotov and S. M. Mikirtych’yants, et al.
757-760
Nuclear Measurement Technique
Segmented high-purity germanium detectors
Yu. B. Gurov, K. N. Gusev, S. L. Katulina, V. G. Sandukovsky and D. Borowicz, et al.
761-763
Nuclear Measurement Technique
Efficiency of radioluminescence of water under the action of accelerated electrons
M. D. Tarasov, S. L. El’yash, V. F. Goncharova, O. N. Petrushin and Yu. A. Savel’ev, et al.
764-771
Application of Computers in Experiments
Rising the signal-to-noise ratio in X-ray spectra of femtosecond laser-produced plasmas using the “mean-median” algorithm
S. V. Gasilov, V. I. Mazhukin, A. Ya. Faenov, T. A. Pikuz and F. Calegari, et al.
772-777
Application of Computers in Experiments
Stabilization of nuclear radiation spectra by the hardware and software correction
Zh. K. Samatov, A. A. Stakhin and V. I. Fominykh
778-794
Application of Computers in Experiments
A data acquisition system of the SND detector for experiments on the BЭΠΠ-2000
V. M. Aulchenko, A. G. Bogdanchikov, A. A. Botov, D. A. Bukin and M. A. Bukin, et al.
795-801
Application of Computers in Experiments
A hardware and software system for the laser time-of-flight mass spectrometer
Alexei A. Sysoev, V. B. Kas’yanov, S. S. Poteshin, E. E. Sil’nikov and A. S. Trofimov, et al.
802-805
Electronics and Radio Engineering
A capacitor with the complete compensation of the radiation-stimulated charge loss
V. A. Borissenok and G. P. Obydenkov
806-810
Electronics and Radio Engineering
Measurements of high-frequency complex impedances in fast processes
Yu. B. Kudasov and A. V. Philippov
811-814
General Experimental Techniques
A collector assembly for measuring a subnanosecond-duration electron beam current
E. Kh. Baksht, E. V. Balzovskii, A. I. Klimov, I. K. Kurkan and M. I. Lomaev, et al.
815-817
General Experimental Techniques
A VUV-UV gas-discharge lamp on a low-pressure mixture of argon and xenon with bromine vapors
A. K. Shuaibov, I. A. Grabovaya and P. N. Volovich
818-820
General Experimental Techniques
A metrological reference UV sensor
Yu. N. Bobrenko, S. Yu. Pavelets and A. M. Pavelets
821-824
General Experimental Techniques
A superhigh-frequency attachment to the pulse X-ray fluorimeter
S. V. Anishchik, V. I. Borovkov, V. I. Ivannikov, Yu. D. Chernousov and I. V. Shebolaev
825-827
General Experimental Techniques
Peculiarities of the MX7304A monopole mass spectrometer performance in pulse counting mode
V. A. Baturin and S. A. Eremin
828-832
Physical Instruments for Ecology, Medicine, and Biology
An immersible fiber-optic fluorometer
Yu. N. Kulchin, S. S. Voznesenskiy, E. L. Gamayunov, A. S. Gurin and A. A. Korotenko, et al.
833-837
Laboratory Techniques
An instrument for determining the densities of liquid metals and alloys
B. B. Alchagirov and T. M. Taova
838-841
Laboratory Techniques
An ultrahigh-vacuum nitrogen-free helium cryostat with small heat losses
V. N. Trofimov, A. N. Chernikov, S. V. Zaitsev-Zotov, I. N. Dyuzhikov and V. M. Shevlyuga, et al.