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Dive into the research topics where V. V. Kindin is active.

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Featured researches published by V. V. Kindin.


arXiv: Astrophysics | 2007

Ultra-high energy cosmic ray investigations by means of EAS muon density measurements

N. S. Barbashina; A. G. Bogdanov; D. V. Chernov; A. N. Dmitrieva; D. M. Gromushkin; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; G. Mannocchi; A. A. Petrukhin; O. Saavedra; V. V. Shutenko; D. A. Timashkov; G.C. Trinchero; I. I. Yashin

A new approach to investigations of ultra-high energy cosmic rays based on the ground-level measurements of the spectra of local density of EAS muons at various zenith angles is considered. Basic features of the local muon density phenomenology are illustrated using a simple semi-analytical model. It is shown that muon density spectra are sensitive to the spectrum slope, primary composition, and to the features of hadronic interaction. New experimental data on muon bundles at zenith angles from 30° to horizon obtained with the coordinate detector DECOR are compared with CORSIKA-based simulations. It is found that measurements of muon density spectra in inclined EAS give possibility to study characteristics of primary cosmic ray flux in a very wide energy range from 10 15 to 10 19 eV.


Bulletin of The Russian Academy of Sciences: Physics | 2013

Energy spectrum of cascade showers generated in water by near-horizontal muons

S. S. Khokhlov; N. S. Barbashina; A. G. Bogdanov; A. N. Dmitrieva; L. I. Dushkin; E. A. Zadeba; V. V. Kindin; E. A. Kovylyaeva; R. P. Kokoulin; K. G. Kompaniets; V. V. Ovchinnikov; A. A. Petrukhin; V. A. Khomyakov; D. V. Chernov; V. V. Shutenko; I. I. Yashin

We discuss measuring cascade shower energy using the NEVOD Cherenkov water detector with a spatial lattice of quasi-spherical modules (QSMs). Dense QSM spacing makes it possible to reconstruct a number of cascade particles along the shower axis from the PMT response amplitude. Our cascade curve reconstruction technique is applied to showers generated by near-horizontal high-energy muons selected using the DECOR coordinate detector deployed around NEVOD. The first results from cascade energy spectrum measurements are reported.


Journal of Physics: Conference Series | 2013

NEVOD-DECOR experiment: results and future

O. Saavedra; M. B. Amelchakov; N. S. Barbashina; A. G. Bogdanov; D. V. Chernov; A. Chiavassa; L. I. Dushkin; S. S. Khokhlov; V. A. Khomyakov; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; G. Mannocchi; S Yu Matveev; A. A. Petrukhin; V. V. Shestakov; I. A. Shulzhenko; V. V. Shutenko; G.C. Trinchero; I. I. Yashin; E. A. Zadeba

Russian-Italian NEVOD-DECOR experiment on the measurements of the local muon density spectra (LMDS) at various zenith angles gave possibility to obtain information on primary cosmic ray flux and interaction characteristics in a record wide energy range from 1015 to more than 1018 eV. Comparison of the measurement results with CORSIKA-based simulations showed the increase of LMDS slope at PeV energies of primaries (corresponding to the first knee); a trend to a heavier primary mass composition above the knee; indication for a second knee (a further increase of the spectrum slope near 1017 eV). At large zenith angles and high muon densities (corresponding to primary energies around 1018 eV) a considerable excess of muon bundle events in comparison with the expectation based on independent estimates of the primary spectrum and widely used hadron interaction models has been found. In 2011, a new phase of measurements of the energy spectrum of cascade showers initiated by high-energy muons in water and of the energy deposit of muon bundles at various zenith angles and muon multiplicities started. Further plans include the deployment of a traditional EAS array around the NEVOD-DECOR complex.


Bulletin of The Russian Academy of Sciences: Physics | 2013

A proposed NEVOD-EAS installation for the detection of extensive air showers

I. A. Shulzhenko; M. B. Amelchakov; N. S. Barbashina; A. G. Bogdanov; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; A. Chiavassa; O. I. Likiy; G. Mannocchi; V. V. Ovchinnikov; A. A. Petrukhin; O. Saavedra; G.C. Trinchero; V. V. Shestakov; V. V. Shutenko; I. I. Yashin

A new installation is dedicated to the independent evaluation of extensive air shower (EAS) energies detected in the NEVOD-DECOR experiment in the knee region of the energy spectrum. The design for the measuring system of the shower installation is based on clusters of scintillation detectors that are located on the roofs of laboratory buildings at MEPhI (Moscow) and will detect the electromagnetic (for near-vertical showers) and muon (for large zenith angles) EAS components. Features of the measuring system, the system for data acquisition and processing, and the results from investigating the characteristics of a single detector are discussed, along with the algorithm for event formation by the data of separate clusters.


Bulletin of the Lebedev Physics Institute | 2010

New Detecting System of the NEVOD Cherenkov Water Detector

S. S. Khokhlov; I. A. Vorob’ev; V. G. Gulyi; I. S. Kartsev; V. V. Kindin; K. G. Kompaniets; M. A. Korolev; A. A. Petrukhin; V. V. Shutenko; I. I. Yashin

A new detecting system of the NEVOD Cherenkov water detector is described, whose development implies replacement of photomultipliers in quasispherical modules of the existing three-dimensional network by low-noise FEU-200 photomultipliers, their dynamic range expansion with the purpose to study events with energies above 1017 eV, the transition to the cluster structure principle, and the possibility of operating in the hodoscopic mode.


Nuclear Physics B - Proceedings Supplements | 1999

Detection of muon bundles at large zenith angles

V. M. Aynutdinov; A. Castellina; D. V. Chernov; A.A. Ezubchenko; W. Fulgione; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; A.A. Konovalov; G. Mannocchi; A. A. Petrukhin; Yu. N. Rodin; O. Saavedra; V. V. Shutenko; G. Trinchero; S. Vernetto; N. N. Vonsovsky; E. E. Yanson; I. I. Yashin

The large area coordinate detector (DECOR) represents a multilayer system of plastic streamer tube chamber modules surrounding the Cherenkov water calorimeter NEVOD. Experimental data collected during the test expositions of first. DECOR supermodules (8 vertical planes with 8.4 m 2 working area) have been analysed, angular and spatial reconstruction accuracies have been estimated. The procedure of the selection of events corresponding to detection of parallel tracks (muon bundles originated in the atmosphere) is discussed.


Bulletin of The Russian Academy of Sciences: Physics | 2015

Status of the NEVOD-EAS experiment

I. A. Shulzhenko; M. B. Amelchakov; N. V. Ampilogov; N. S. Barbashina; A. G. Bogdanov; A. Chiavassa; S. S. Khokhlov; N. N. Kamlev; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; O. I. Likiy; G. Mannocchi; V. V. Ovchinnikov; A. A. Petrukhin; O. Saavedra; G. Trinchero; V. V. Shestakov; V. V. Shutenko; I. I. Yashin

The NEVOD-EAS setup is designed for independent estimation of the EAS parameters recorded in the NEVOD-DECOR experiment in the region of the energy spectrum knee. The setup’s recording system is based on the clusters of scintillation detectors for the EAS electron-photon component, located on the territory of MEPhI. Characteristics of the shower array recording system that ensure detection, data acquisition and primary processing, and the time synchronization of clusters are discussed, along with results of studying the nonuniformity of NEVOD-EAS scintillation detector responses.


Journal of Physics: Conference Series | 2013

Proposal of NEVOD-EAS shower array

I. A. Shulzhenko; M. B. Amelchakov; N. S. Barbashina; A. G. Bogdanov; A. Chiavassa; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; O. I. Likiy; S Yu Matveev; V. V. Ovchinnikov; A. A. Petrukhin; V. V. Shestakov; V. V. Shutenko; I. I. Yashin

New setup for detection of EAS electromagnetic component at the knee region of primary energies is under construction on the basis of the experimental complex NEVOD (Moscow, Russia). The measuring system of the EAS array has a cluster organization. Clusters are located on the roofs of laboratory buildings of MEPhI (Moscow). Features of measuring and DAQ systems, results of investigations of characteristics of a single counter and the event formation algorithm from the data of separate clusters are discussed.


Bulletin of The Russian Academy of Sciences: Physics | 2011

Muon Calibration of the Cherenkov Water Detector NEVOD

S. S. Khokhlov; M. B. Amelchakov; V. V. Ashikhmin; I. A. Vorobiev; E. A. Zadeba; V. V. Kindin; K. G. Kompaniets; A. A. Petrukhin; M. S. Sokolov; I. A. Shulzhenko; V. V. Shutenko; I. I. Yashin

The problem of calibrating a Cherenkov water detector (CWD) and the possibilities for its use based on the example of the CWD NEVOD are discussed. Results of the calibration of quasi-spherical modules in water volume by means of vertical muons selected by scintillation telescopes and compared to the results from measurements performed at test facilities are presented.


International Journal of Modern Physics A | 2005

Observation of UHECRs in horizontal flux

I. I. Yashin; M. B. Amelchakov; N. S. Barbashina; A. G. Bogdanov; D. V. Chernov; V. V. Kindin; R. P. Kokoulin; K. G. Kompaniets; E. O. Konoreva; A. A. Petrukhin; V. V. Shutenko; D. A. Timashkov; E. E. Yanson; O. S. Zolina; G. Mannocchi; G.C. Trinchero; O. Saavedra

Preliminary results of muon bundle studies in of zenith angle range θ ≥ 60° and multiplicities by means of coordinate detector DECOR are discussed. Estimates of muon bundle characteristics at large zenith angles obtained with CORSIKA code demonstrate the ability of such not large detector as NEVOD-DECOR complex to perform cosmic ray studies in a very wide energy range from 1011 eV to more than 1017 eV.

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R. P. Kokoulin

National Research Nuclear University MEPhI

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K. G. Kompaniets

National Research Nuclear University MEPhI

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A. A. Petrukhin

National Research Nuclear University MEPhI

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I. I. Yashin

National Research Nuclear University MEPhI

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V. V. Shutenko

National Research Nuclear University MEPhI

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A. G. Bogdanov

National Research Nuclear University MEPhI

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N. S. Barbashina

National Research Nuclear University MEPhI

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S. S. Khokhlov

National Research Nuclear University MEPhI

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O. Saavedra

Istituto Nazionale di Fisica Nucleare

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D. V. Chernov

National Research Nuclear University MEPhI

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