\TN{02--0--1082--2009/2014}{1}{\tsprg} { JINR's Participation in Experiments at the Fermilab \\ (Projects D0, CDF)} { G.D.~Alexeev\\ V.V.~Glagolev} %%\PLDDD{J.A.~Budagov} \TC{Belarus, Bulgaria, Chile, Georgia, Greece, Italy, Romania, Russia, Slovak Republic, USA, Ukraine, Uzbekistan.} \TA Data processing; physics analysis, R and D with calorimeter elements on heavy crystals and extruded scintillator plates (CDF). %%\vspace*{4mm} {\bf Expected main results in 2013:} \begin{itemize} \item Development of the D0 software; data taking and analysis; measurement of the $\Xi_{b}$ mass, preliminary results on proton structure functions. \item Data taking and analysis; new data for the top mass and for Very High Multiplicity studies. \end{itemize}
List of projects:
  Project Leader Priority
(period of realisation)
1. DO G.D.Alexeev1   (1997-2014)
2. CDF J.A.Budagov
V.V. Glagolev
1   (1997-2014)
%%\begin{project} %%\item \PList{D0}{G.D.~Alexeev}{1}{1997}{2014} %%\item \PList{CDF}{J.A.~Budagov\\V.V.~Glagolev}{1}{1997}{2014} %%\end{project} \begin{stage} \item \PS{Experiment D O}{G.D.~Alexeev}{\psda} \PL{DLNP}{}{V.N.~Abazov, D.V.~ Bandurin, G.A.~Golovanov, I.N.~Churin, L.S.~Vertogradov, Yu.L.~Vertogradova, A.Yu.~Verkheev, N.I.~Zhuravlev, D.E.~Korablev, V.L.~Malyshev, M.A.~Patsyuk, Yu.P.~Merekov, N.B.~Skachkov, V.V.~Tokmenin, Yu.N.~Kharhzheev, A.M.~Rojdestvenski, Yu.A.~Yatsunenko} \PS{Experiment CDF}{J.A.~Budagov\\V.V.~Glagolev}{\psda} \PL{DLNP}{}{A.M.~Artikov, V.Yu.~Batusov, V.I.~Kolomoets} \PL{}{}{ S.M.~Kolomoets, M.V.~Lyablin, Yu.A.~Koultchitski, I.A.~Suslov, F.~Prokoshyn, A.V.~Simonenko, D.I.~Hubua, A.V.~Sazonova, A.A.~Semenov, I.E.~Chirikov-Zorin, V.B.~Flyagin, D.Sh.~Chokhely, V.Yu.~Baranov, Yu.I.~Davydov, M.V.~Lyablin, V.A.~Bednyakov, V.V.~Tereschenko, S.V.~Tereschenko, N.S.~Azaryan, Z.U.~Usubov, S.N.~Studenov, A.N.~Shalugin, B.M.~Sabirov } \PL{BLTP}{}{G.A.~Kozlov, D.I. Kazakov, M. Davydkov } %\PL{VBLHEP}{}{} \PL{LIT}{}{V.V.~Ivanov, P.V.~Zrelov, V.V.~Uzhinsky, A.M.~Raportirenko} \PL{SCAR}{ }{V.N.~Samoilov} \end{stage} \begin{intcoop} \mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{Bulgaria}{Sofia}{SU} \mtab{Chile}{Valparaiso}{Univ.} \mtab{Georgia}{Tbilisi}{HEPI-TSU} \mtab{Greece}{Athens}{UoA} \mtab{Italy}{Pisa}{UniPi} \mtab{}{}{INFN} \mtab{}{Udine}{UNIUD} \mtab{}{Frascati}{INFN LNF} \mtab{Romania}{Bucharest}{IFIN-HH} \mtab{Russia}{Moscow, Troitsk}{INR RAS} \mtab{Slovak Republic}{Bratislava}{IP SAS} \mtab{}{}{CU} \mtab{USA}{Argonne, IL}{ANL} \mtab{}{Batavia, IL}{Fermilab} \mtab{}{Boston, MA}{NU} \mtab{}{Charlottesville, VA}{UVa} %\mtab{}{Madison, WI}{UW-Madison} \mtab{}{New York, NY}{SUNY} \mtab{Ukraine}{Kharkov}{ISC NASU} \mtab{Uzbekistan}{Samarkand}{SSU} \end{intcoop} %%%\newpage \TN{02--2--1099--2010/2015}{1}{\tsext} {Study of Neutrino Oscillations } {Yu.A.~Gornushkin} \TLD{O.Yu.~Smirnov} \TC{ Belgium, CERN, China, Croatia, Czech Republic, France, Germany, Hungary, Japan, Italy, Russia, Spain, Switzerland, Ukraine, USA.} \TA \begin{itemize} \item Search for long-baseline neutrino oscillation and study of neutrino oscillation parameters with the OPERA detector in the CNGS beam (CERN--Gran Sasso) OPERA project. \item Direct solar neutrino flux measurements with the BOREXINO detector -- phase-II experiment. \item Measurement of the 13 neutrino mixing angle in the Daya Bay experiment. \end{itemize} %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Scanning and analysis of the OPERA nuclear emulsion at JINR. \item Software development for the Target Tracker data analysis. Development of the Brick Finding software, analysis of the electronic detector data and event vertex location. \item Continuation of the data taking with the BOREXINO detector. \item Improvement of the position reconstruction algorithm for the BOREXINO detector. \item The study seasonal variations of the solar neutrino flux. \item Precise measurement of the pp-neutrino flux with total errors down to 15\%. \item Improvement of the current results on the effective solar neutrino magnetic moment. \item Improvement of the current result on the $e\rightarrow \nu\gamma$ reactions. \item Development of Monte Carlo software for background simulation in the Daya Bay experiment. \item Participation in data analysis for $\theta_{13}$ mixing angle measurement in the Daya Bay experiment. \end{itemize} %%\begin{project} %%\item \PList{OPERA}{Yu.A.~Gornushkin}{1}{2010}{2015} %%\item \PList{BOREXINO}{O.Yu.~Smirnov}{1}{1996}{2015} %%\item \PList{Daya Bay}{D.V.~Naumov}{1}{2009}{2014} %%\end{project} \begin{stage} \item \PS{Experiment OPERA }{Yu.A.~Gornushkin }{\psdt} \PL{DLNP}{}{S.G.~Dmitrievsky, Z.V.~Krumshtein, A.G.~Olshevskiy, S.G.~Zemskova, A.V.~Chukanov, A.B.~Sadovsky, D.V.~Naumov, A.S.~Sheshukov, A.A.~Nozdrin} \PL{VBLHEP}{}{Yu.P.~Petukhov} \PL{LIT}{}{ G.A.~Ososkov} \item \PS{Experiment BOREXINO }{O.Yu.~Smirnov}{\psdt} \PL{DLNP}{}{K.A. Fomenko, D.V. Korablev, A.P. Sotnikov } \item \PS{Daya Bay Project}{D.V.~Naumov}{\psdt} \PL{DLNP}{}{M.~Gonchar, Yu.A.~Gornushkin, I.P.~Nemchonok, E.A.~Naumova, A.G.~Olshevskiy, O.Yu.~Smirnov, O.B.~Samoylov, D.V.~Korablev} \end{stage} \begin{intcoop} \mtab{Belgium}{Brussels}{ULB} \mtab{}{}{VUB} \mtab{}{Geel}{IRMM} \mtab{}{Leuven}{K.U.Leuven} %\mtab{Bulgaria}{Sofia}{SU} \mtab{CERN}{Geneva}{} \mtab{China}{Beijing}{IHEP CAS} \mtab{}{}{CIAE} \mtab{Croatia}{Zagreb}{RBI} \mtab{Czech Republic}{Prague}{CU} \mtab{France}{Annecy-le-Vieux}{LAPP} \mtab{}{Lyon}{IPNL} \mtab{}{Orsay}{LAL} \mtab{Germany}{Heidelberg}{MPIK} \mtab{}{Munich}{MPI-P} \mtab{Hungary}{Budapest}{Wigner RCP} \mtab{ Japan}{Nagoya}{Nagoya Univ.} \mtab{Italy}{Bari}{UniBa} \mtab{}{}{INFN} \mtab{}{Genoa}{INFN} \mtab{}{Naples}{INFN} \mtab{}{Legnaro}{INFN LNL} \mtab{}{Milan}{UNIMI} \mtab{}{}{INFN} \mtab{}{Padua}{UniPd} \mtab{}{Perugia}{ INFN} \mtab{}{Pavia}{ INFN} \mtab{}{Rome}{INFN} \mtab{}{Trieste}{INFN} \mtab{Russia}{Moscow}{NRC KI} \mtab{}{}{ITEP} \mtab{}{Moscow, Troitsk}{INR RAS} \mtab{}{Gatchina}{PNPI} \mtab{Spain}{Valencia}{UV} \mtab{Switzerland}{Bern}{Uni Bern} \mtab{USA}{Cambridge, MA}{MIT} \mtab{}{Berkeley, CA}{Berkeley Lab} \mtab{}{Los Angeles, CA}{UCLA} \mtab{}{Madison, WI}{UW-Madison } \mtab{}{Princeton, NJ}{PU} \mtab{}{Upton, NY}{BNL} \mtab{Ukraine}{Kharkov}{ISC NASU} \end{intcoop} \TN{02--0--1108--2011/2013}{1}{\tscom} {Experiment PANDA at FAIR}{A.G.~Olshevskiy } \TLDs{G.D.~Alexeev\\A.S.~Vodopyanov } \TC{Belarus, Czech Republic, Germany, Italy, Russia, Ukraine.} \TA The study of the exotic nuclear-matter states and nucleon structure in the PANDA experiment at FAIR. %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Development of MC generators and optimization of the event analysis. \item Preparation of the documentation for magnet production. \item Development of the movable platform of the magnet. \item Preparation of the muon system TDR. \end{itemize} %%\begin{project} %%\item \PList{PANDA}{A.G.~Olshevskiy}{1}{2011}{2014} %%\end{project}
List of projects:
  Project Leader Priority
(period of realisation)
1. PANDA A.G. Olshevskiy 1   (2011-2014)

\begin{stage} \item \PS{PANDA Project}{ A.G.~Olshevskiy}{\pstp} \PL{DLNP}{\\G.D.~Alexeev}{V.M.~Abazov, N.B.~Skachkov, N.~Angelov, D.B.~Pontekorvo, A.G.~Samartsev, A.N.~Skachkova, V.K.~Rodionov, V.V.~Tokmenin} \PL{VBLHEP}{\\A.S.~Vodopyanov}{E.A.~Strokovsky, M.G.~Sapozhnikov, V.K.~Dodokhov, E.K.~Koshurnikov, G.S.~Shabratova, M.Yu.~Barabanov, V.A.~Arefev, V.I.~Astakhov, A.A.~Efremov, V.I.~Lobanov, Yu.Yu.~Lobanov, P.V.~Nomokonov, I.A.~Alex, Yu.N.~Rogov, R.A.~Salmin, A.A.~Feshchenko, M.K.~Suleymanov, A.S.~Galoyan} \PL{LIT}{}{Gh.~Adam, V.V.~Uzhinsky } \PL{BLTP}{}{A.S.~Sorin, O.V.~Teryaev, A.V.~Efremov} \end{stage} \begin{intcoop} \mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{ Czech Republic}{Prague}{CU} \mtab{Germany}{Darmstadt}{GSI} \mtab{Italy}{Turin}{UniTo} \mtab{Russia}{Protvino }{IHEP} \mtab{}{Dubna}{BSINP MSU} \mtab{Ukraine}{Kharkov}{ISM NASU} \end{intcoop} \TN{02--2--1109--2012/2014}{1}{\tsprg} {Astrophysical Studies in the Space Experiments } {L.G.~Tkatchev} \TC{Belarus, Czech Republic, Japan, Mexico, Republic of Korea, Russia. } \TA \begin{itemize} \item The TUS space experiment has been proposed to measure the energy spectrum, composition and angular distribution of the Ultra High Energy Cosmic Rays (UHECR) at $E \approx 10^{19}-10^{20}$~eV, to study the region beyond the GZK cutoff. Existence of these particles is beyond the Standard Model of particle physics and is of great interest. The study from the orbit is much more effective in comparison with the ground-based detectors. The existing world statistics is assumed to be increased by a factor of 2--3 during 3 years of the global data taking. The TUS detector will make it possible to study UHECP neutrino Extensive Air Showers (EAS) from the space orbit. \item The aim of the NUCLEON Project is direct CR measurements in the energy range 10$^{11}$-10$^{15}$~eV and the atomic charge range up to Z$\approx$40 in the near--Earth space to solve mainly the "knee" problem in the CR spectrum. The CR phenomena in this energy region are investigated in terrestrial experiments by measurement of EAS parameters or in balloon or space experiments. Below $\sim 10^{14}$~eV the spectrum and composition are known from direct observation with detectors placed in balloons and earth satellites. However, at higher energies the CR flux is smaller and more difficult for direct and needs observation. Precise measurement of the CR composition and anisotropy will help to test the existing theoretical concepts and will become a basis for further studies. \end{itemize} %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Participation in the complex tests of the in flight TUS apparatus on the Michail Lomonosov satellite. \item Participation in the data taking of the TUS experiment. \item Participation in production of the TUS on-line programs and off-line analysis. \item Participation in the complex tests of the NUCLEON trigger system at heavy ion and hadron beams at SPS CERN. \item Development of the MC simulation program for the neutron response for the HERO space detector. Development of on-line data handling programs. Participation in production of the HERO detector prototype and beam tests at CERN's SPS. \end{itemize} %%\begin{project} %%\item \PList{TUS }{L.G.~Tkatchev}{1}{2012}{2014} %%%\item \PList{NUCLEON }{L.G.~Tkatchev}{2}{2005}{2011} %%\end{project}
List of projects:
  Project Leader Priority
(period of realization)
1. TUS L.G. Tkatchev 1   (2012-2014)
%%\vspace*{10mm} \begin{stage} \item[] \PS{Experiment TUS }{L.G.~Tkatchev}{\psinp} \PL{DLNP}{}{V.M. Grebenyuk, S.V. Bektemerova, S.Yu. Porokhovoy, D.V.~Naumov, A.V.~Tkachenko, F.F.~Grinyuk, M.~Slunechka, V.~Slunechkova, O. Bakina, A. Nikiforov} \PL{VBLHEP}{}{A.V.~Skrypnik} \PL{LIT}{}{S.K.~Slepnev} \item[] \PS{Experiment NUCLEON}{L.G.~Tkatchev}{\psinp} \PL{DLNP}{}{V.M.~Grebenyuk, S.Yu.~Porokhovoy, N.I.~Kalinin, V.F.~Boreyko, Nguen Man Shat, B.M.~Sabirov, A.B.~Sadovsky, Z.B.~Krumshtein, A.V.~Tkachenko, A.A.~Timoshenko, N.S.~Tolstoy} \PL{VBLHEP}{}{N.V.~Gorbunov} \PL{LIT}{}{V.N.~Shigaev} \item[] \PS{Preparation of project\\ "Showers of knowledges"}{G.A. Shelkov}{ Project preparation} \PL{DLNP}{}{ A.V.~Guskov, V.O.~Gromov, A.S.~Zhemchugov, N.N.~Khovansky, V.G. Kruchonok} \end{stage} \begin{intcoop} \mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{}{}{IP NASB} \mtab{Czech Republic}{Prague}{IP ASCR} \mtab{}{}{CU} \mtab{Japan}{Wako}{RIKEN} \mtab{Mexico}{Puebla}{BUAP} \mtab{Republic of Korea}{Seoul}{EWU} \mtab{Romania}{Bucharest}{ISS} \mtab{Russia }{Moscow}{SINP MSU} \mtab{}{}{VNIIEM Corporation} \mtab{}{Dubna}{Raduga} \mtab{}{Korolev}{"Space Regatta" Consortium} \mtab{Ukraine}{Kharkov}{ISM NASU} \end{intcoop} \TN{02--1--1106--2011/2013}{1}{\tscom} {Investigations of Compressed Baryonic Matter at the GSI Accelerator Complex (Project CBM)} { A.I.~Malakhov\\V.V.~Ivanov} \TLDs{Yu.V.~Zanevsky\\V.P.~Ladygin} \TC{Bulgaria, Germany, Mongolia, Poland, Romania, Russia, Slovak Republic, Uzbekistan, Ukraine.} \TA Design and development of the superconducting dipole magnet, transition radiation and straw detectors for the CBM experiment at the GSI accelerator complex. Study of the multiparticle dynamics in heavy ion collisions at SIS100 and SIS300. Development of algorithms and software for the trigger, simulation and data analysis. %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Design of the superconducting dipole magnet for the CBM experiment. \item Design and testing of the prototype transition radiation and straw detectors. \item Development of the algorithms and software for the trigger and data analysis. \item Simulation of the multiparticle dynamics in heavy ion collisions. \end{itemize} %%\begin{project} %%\item \PList{CBM}{A.I.~Malakhov}{1}{2011}{2015} %%\end{project}
List of projects:
  Project Leader Priority
(period of realisation)
1. CBM A.I. Malakhov 1   (2011-2015)

\begin{stage} \item \PS{CBM Project\\ Design and manufacture of the superconducting dipole magnet,\\ the transition radiation and \\ straw detectors. Development\\ of the algorithms and software\\ for trigger, simulation and\\ data analysis.}{ A.I.~Malakhov}{\psinp} \PL{VBLHEP}{}{E.--M. Ilgenfritz, Yu.S. Anisimov, A.V. Alfeev, V.A. Alfeev, S.N. Kuznetsov, Yu.V.~Zanevsky, V.F.~Chepurnov, S.P.~Chernenko, O.V. Fateev, V.N.~Zryuev, G.A.~Cheremukhina, V.P.~Ladygin, T.A.~ Vasiliev, A.K.~Kurilkin, P.K.~Kurilkin,} \PL{}{}{ A.P.~Ierusalimov, A.P. Zinchenko, D.V.~Peshekhonov, E.B.~Plekhanov, V.N.~Pozdnyakov, P.A.~Rukoyatkin, S.V.~Razin, V.D.~Peshekhonov, G.D.~Kekelidze, V.V.~Myalkovsky, K.I.~Davkov, S.S.~Parzhitsky, N.S.~Grigalashvili, I.V.~Boguslavsky, V.M.~Golovatyuk, E.~Nazieva, V.M.~Lysan, O.V.~Rogachevsky, I.~Mandjavidze, A.V.~Shabunov, Yu.V.~Gusakov, A.V.~Bychkov} \PL{LIT}{}{V.V. Ivanov, P.V. Zrelov, P.G. Akishin, E.P. Akishina, T.P.~Akishina, V.P.~Akishina, S.A. Baginyan, D.S.~Golub, O.Yu. Derenovskaya, V.V. Ivanov (jr), P.I.~Kisel, A.A.~Lebedev, S.A. Lebedev, G.N. Ososkov, A.M.~Raportirenko, T.P. Sapozhnikova, V. Sheinast} \PL{DLNP}{}{V.A. Karnaukhov, V.V. Kirakosyan, Yu.L. Vertogradova, S.P. Avdeev, W. Karch} \PL{BLTP}{}{D. Blaschke, V.V. Burov, S.G Bondarenko, V.D. Toneev} \end{stage} \begin{intcoop} %\mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{Bulgaria}{Sofia}{INRNE BAS} \mtab{Germany}{Darmstadt}{GSI} \mtab{ }{Dresden }{HZDR } \mtab{ }{Frankfurt/Main }{Univ.} %\mtab{ }{Giessen }{JLU } \mtab{ }{Heidelberg}{Univ.} \mtab{Mongolia}{Ulaanbaatar}{IPT MAS} \mtab{Poland}{Warsaw}{WUT} \mtab{Romania}{Bucharest}{IFIN-HH} \mtab{}{}{INCDIE ICPE-CA} \mtab{ Russia}{Moscow}{ITEP} \mtab{}{}{SINP MSU} \mtab{}{Moscow, Troitsk}{INR RAS} \mtab{ }{Protvino }{IHEP} \mtab{ Slovak Republic}{Bratislava}{IP SAS} \mtab{}{}{CU} \mtab{Ukraine}{Kiev}{BITP NASU} \mtab{Uzbekistan}{Jizzakh}{JSPI} \mtab{}{Samarkand}{SSU} \end{intcoop} \TN{02--1--1096--2010/2014}{1}{\tsprg} {Study of Rare Charged Kaon Decays in Experiments\\ at the CERN SPS} {V.D.~Kekelidze\\Yu.K.~Potrebenikov} %\TLD{} \TC{Belarus, Belgium, Bulgaria, CERN, Czech Republic, Germany, Mexico, Romania, Russia, Slovak Republic, United Kingdom, USA.} \TA Realization of the NA62 Project allows to clarify CP--violation problem, to measure precisely very rare charged kaon decay to charged pions and two neutrinos, to carried out a search for supersymmetric particles and their partners with a goal to observe a physics beyond the Standard Model. In addition, precise characteristics of rare kaon and hyperon decays will be measured. A high resolution magnetic spectrometer based on the straw drift chambers working in vacuum will be designed and constructed on the stage of preparation of the experiment. Software for simulation, data processing and analysis will be developed. %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Mass production of straw tubes will be continued. \item Three modules of the the straw detector will be produced and delivered to CERN. \item Software for the simulation of magnetic spectrometer and full set--up will be developed; system for detector calibration and event reconstruction will be upgraded; common software of the experiment will be developed. \item The fabrication and tests of straw detector modules in VBLHEP and CERN and on the particle beams will be continued. \end{itemize} %%%\vspace*{4mm} %%\begin{project} %%\item \PList{NA62}{V.D.~Kekelidze\\Yu.K.~Potrebenikov}{1}{2010}{2015} %%\end{project}
List of projects:
  Project Leader Priority
(period of realisation)
1. NA62 V.D. Kekelidze
Yu.K.~Potrebenikov
1   (2010-2015)
%%%\newpage \begin{stage} \item \PS{Experiment NA62}{V.D.~Kekelidze\\Yu.K.~Potrebenikov}{\pstt\\ \psmod} \PL{VBLHEP}{}{D.T.~Madigozhin, S.~Gevorgyan, A.I.~Zinchenko, N.A.~Molokanova, L.N.~Glonti, I.A.~Polenkevich, S.N.~Shkarovsky, V.V.~Tryanin, M.H.~Misheva, E.A.~Gudzovsky, V.P.~Falaleev, Yu.P.~Petukhov, A.A.~Belkova, A.N.~Shcherbakov, V.N.~Gorbunova, } \PL{}{}{L.A.~Slepets, S.A~Movchan, V.I.~Gursky, E.M.~Kislov, S.V~ Khabarov, V.S.~Khabarov, S.V.~Sergeev, M.V.~Zaytseva, S.V.~Kilchakovskaya, V.V.~Elsha, T.L.~Enik, A.V.~Vishnevsky, N.N.~Shcherbakov, Yu.V.~Gusakov, V.A.~Bogdanov, V.M.~Lysan, V.A.~Samsonov, L.N.~Tarasova, V.V.Tarasov, Yu.S.~Kovalev, A.O.~Kolesnikov, A.N.~Sotnikov, N.I.~Azorsky} \PL{DLNP}{}{N.A.~Kuchinsky, V.G.~Kalinnikov, N.P.~Kravchuk} \end{stage} \begin{intcoop} \mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{Belgium}{Louvain-la-Neuve}{UCL} \mtab{Bulgaria}{Sofia}{SU} \mtab{}{}{INRNE BAS} \mtab{}{Blagoevgrad}{SWU} \mtab{}{Plovdiv}{PU} \mtab{CERN}{Geneva}{} \mtab{Czech Republic}{Prague}{CU} \mtab{Germany}{Mainz}{JGU} \mtab{Italy}{Florence}{INFN} \mtab{}{Ferrara}{INFN} \mtab{}{Frascati}{INFN LNF} \mtab{}{Perugia}{INFN} \mtab{}{Pisa}{INFN} \mtab{}{Rome}{INFN} \mtab{}{}{Univ. "Tor Vergata"} \mtab{}{Turin}{INFN} \mtab{Mexico}{San Luis Potosi}{UASLP} \mtab{Romania}{Bucharest}{IFIN-HH} \mtab{Russia}{Moscow, Troitsk}{INR RAS} \mtab{}{Protvino}{IHEP} \mtab{Slovak Republic}{Bratislava}{CU} \mtab{United Kingdom}{Birmingham}{Univ.} \mtab{}{Bristol}{Univ.} \mtab{}{Glasgow}{US} \mtab{}{Liverpool}{Univ.} \mtab{USA}{Chicago, IL}{UChicago} \mtab{}{Fairfax, VA }{GMU} \mtab{}{Evanston, IL}{NU} \mtab{}{Menlo Park, CA }{SLAC} \mtab{}{Merced, CA}{UC Merced} \end{intcoop} %%\newpage \TN{02--0--1083--2009/2013}{1}{\tscom} {CMS. Compact Muon Solenoid at the LHC} {A.V.~Zarubin } %%\PLDDD{I.A.~Golutvin} \TC{Armenia, Austria, Belarus, Belgium, Brazil, Bulgaria, CERN, China, Croatia, Cyprus, Czech Republic, Estonia, Finland, France, Georgia, Germany, Greece, Hungary, India, Iran, Italy, Mexico, New Zealand, Pakistan, Poland, Republic of Korea, Russia, Serbia, Slovak Republic, Bratislava, Spain, Switzerland, Taiwan, Turkey, Ukraine, United Kingdom, USA, Uzbekistan.} \TA The CMS Collaboration has constructed a general--purpose detector to be operational at the start--up of the Large Hadron Collider (LHC/CERN) to exploit its full discovery potential. Study of fundamental properties of the matter in Super High Energy proton--proton and nucleus--nucleaus interactions. %%\vspace*{1mm} The major activities of JINR are focused on the following directions: -- forward calorimetry, including endcap hadron, and preshower detector; -- forward muon stations with cathode strip chambers; -- development of Physics program to test SM and BSM. %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Start up, maintenance, and operation of forward hadron calorimetry and ME1/1 muon station in experime\-n\-tal cavern at low luminosity and 7 TeV energy. \item Upgrade and technical support of the CMS detectors. \item CMS start up in LHC run, data taking and data quality monitoring. \item Processing and analysis of experimental data, development and improvement of muon and jet reconstruc\-tion algorithms. \item Development of software for GRID--based distributed system for data processing and analysis. Data transmission from CERN to JINR. \end{itemize} %%\begin{project} %%\item \PList{CMS}{A.V.~Zarubin \\I.A.~Golutvin }{1}{2010}{2014} %%\end{project}
List of projects:
  Project Leader Priority
(period of realisation)
1. CMS A.V. Zarubin
I.A. Golutvin
1   (2010-2014)
\begin{stage} \item \PS{Forward calorimetry}{A.V.~Zarubin }{\pspl\\ \pspg\\ \psdt} \PL{VBLHEP}{}{S.V. Afanasiev, M.G. Gavrilenko, I.A. Golutvin, N.S.~Golova, I.N. Gorbunov, P.D. Bunin, A.G.~Volodko, Yu.V.~Ershov, N.I. Zamyatin, V.D. Kalagin, A.Yu.~Ka\-menev, L.G. Kobylets, V.F. Konoplyanikov, A.M.~Ku\-renkov, P.V. Moisenz, V.A. Smirnov, A.I. Malakhov, A.~Mestvirishvili} \PL{DLNP}{}{M.~Finger, M.~Finger (Jn.), M.~Slunechka, V.~Slunechkova, A.~Yanata, Z.~Tsamalaidze} \item \PS{Forward muon station\\ ME1/1}{V.Yu.~Karjavin}{\pspl\\ \pspg\\ \psdt} \PL{VBLHEP}{}{S.E. Vasiliev, A.O. Golunov, I.A. Golutvin, N.V. Gorbunov, Yu.V. Ershov, A.V. Zarubin, A.Yu. Kamenev, A.M. Ku\-renkov, A.M. Makan'kin, V.V. Perelygin, D.A.~Smolin} \PL{LIT}{}{V.V.~Palchik} \item \PS{Upgrade of the CMS detectors}{I.A.~Golutvin}{\psinp} \PL{VBLHEP}{}{S.V.~Afanasiev, N.V.~Gorbunov, V.Yu.~Karzhavin, A.M.~Kurenkov, Yu.V.~Ershov, S.E.~Vasiliev, A.V.~Zarubin, A.M~ Makan'kin, A.I.~Malakhov, P.V.~Moisenz, V.V.~Perelygin, V.A.~Smirnov} \PL{LIT}{}{V.V.~Palchik} \item \PS{Reserch physics programme\\with the CMS Detector}{S.V.~Shmatov\\I.A.~Golutvin}{\psinp} \PL{VBLHEP}{}{S.V. Afanasiev, M.G. Gavrilenko, I.N. Gorbunov, I.M.~Gramenitsky, I.I. Belotelov, P.D. Bunin, A.V.~Zarubin, A.Yu. Kamenev, V.F. Konoplyanikov, L.G. Kobylets, A.V.~Lanev, P.V. Moisenz, M.V. Savina, A.I. Malakhov} \PL{LIT}{}{V.V.~Korenkov, D.A. Oleynik, G.A. Ososkov, V.V. Palchik, A.Sh.~Petrosyan} \PL{BLTP}{}{G.A.~Kozlov, A.B.~Arbuzov, A.V.~Kotikov, E.A.~Kuraev, A.V.~Sidorov, A.V.~Efremov, S.G.~Bondarenko, R.S.~Pasechnik, O.V.~Teryaev} \PL{DLNP}{}{ G.A.~Golovanov, P.X.~Khristova, M.~Finger, M.~Finger~(Jr.), N.B.~Skachkov, A.N.~Skachkova, A.Yu.~Verkheev} %%%\newpage \item \PS{Development of software for\\distributed computation, data \\processing and analysis based\\on GRID--technology }{V.V.~Korenkov }{\psinp} \PL{LIT}{}{V.V.~Mitsyn, V.V.~Palchik, R.N.~Semenov, E.A.~Tikhonenko, I.A.~Filozova} \PL{VBLHEP}{}{I.I.~Belotelov, N.V.~Gorbunov, A.O.~Golunov, P.V.~Moisenz, S.V.~Shmatov} \end{stage} \begin{intcoop} \mtab{Armenia}{Yerevan}{ANL} \mtab{Austria}{Vienna}{HEPHY} \mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{}{}{JIPNR-Sosny NASB} \mtab{}{}{INP BSU} \mtab{}{Gomel}{BelSUT} \mtab{}{}{GSU} \mtab{Belgium}{Louvain-la-Neuve}{UCL} \mtab{}{Antwerp}{UA} \mtab{}{Brussels}{ULB} \mtab{}{}{VUB} \mtab{}{Mons}{UMONS} \mtab{Brazil}{Rio de Janeiro, RJ}{CBPF} \mtab{}{}{UERJ} \mtab{}{}{UFRJ} \mtab{}{Sao Paulo, SP}{Unesp} \mtab{Bulgaria}{Sofia}{SU} \mtab{}{}{INRNE BAS} \mtab{CERN }{Geneva}{} \mtab{China }{Hefei}{USTC} \mtab{}{Beijing}{IHEP CAS} \mtab{}{}{PKU} \mtab{Croatia }{Split}{Univ.} \mtab{Cyprus }{Nicosia}{UCY} \mtab{Czech Republic}{Prague}{CU} \mtab{Estonia }{Tallinn}{NICPB} \mtab{Finland }{Helsinki}{UH} %\mtab{}{}{HUT} \mtab{}{}{HIP} \mtab{}{Jyvaskyla}{UJ} \mtab{}{Oulu}{UO} \mtab{}{Tampere}{TUT} \mtab{France }{Annecy-le-Vieux}{LAPP} \mtab{}{Lyon}{IPNL} \mtab{}{Saclay}{IRFU} \mtab{}{Strasbourg}{IPHC} \mtab{Georgia }{Tbilisi}{HEPI-TSU} \mtab{}{}{AIP} \mtab{Germany}{Berlin}{HUB} \mtab{}{Aachen}{RWTH } \mtab{}{Karlsruhe}{KIT} \mtab{Greece }{Athens}{INP NCSR "Demokritos"} \mtab{}{}{UoA} \mtab{}{Ioannina}{UI} \mtab{Hungary }{Budapest}{Wigner RCP} \mtab{}{Debrecen}{Atomki} \mtab{}{}{UD} \mtab{India }{Mumbai}{BARC} \mtab{}{}{TIFR } \mtab{}{Bhubaneshwar}{IOP} \mtab{}{Chandigarh}{PU} \mtab{Iran}{Tehran}{IPM} \mtab{Italy}{Bari}{INFN } \mtab{}{Bologna}{INFN} \mtab{}{Catania}{INFN LNS} \mtab{}{Florence}{INFN} \mtab{}{Genoa}{INFN} \mtab{}{Padua}{ INFN} \mtab{}{Pavia}{ INFN} \mtab{}{Perugia}{ INFN} \mtab{}{Pisa}{ INFN} \mtab{}{Rome}{ INFN} \mtab{}{Turin}{ INFN} \mtab{Mexico}{Mexico }{Cinvestav} \mtab{New Zealand}{Auckland}{Univ.} \mtab{}{Christchurch}{UC} \mtab{Pakistan}{Islamabad}{QAU} \mtab{Poland}{Warsaw}{UW} \mtab{}{Otwock-Swierk}{NCBJ} \mtab{Republic of Korea}{Kwangju}{CNU} \mtab{}{Naju}{DU} \mtab{}{Namwon}{SU} \mtab{}{Seoul}{KU} \mtab{}{}{Konkuk Univ.} \mtab{}{}{ SNUE} \mtab{}{Chongju}{CBNU} \mtab{Russia}{Moscow}{ITEP} \mtab{}{}{LPI RAS} \mtab{}{}{SINP MSU} \mtab{}{}{NIKIET} \mtab{}{Moscow, Troitsk}{INR RAS} \mtab{}{Gatchina}{PNPI} \mtab{}{Protvino}{IHEP} \mtab{}{Snezhinsk}{VNIITF} \mtab{}{St. Petersburg}{Electron} \mtab{}{Zhukovsky}{MDB} \mtab{Serbia }{Belgrade}{INS "VINCA"} \mtab{Slovak Republic }{Bratislava}{STU} \mtab{Spain }{Madrid}{CIEMAT} \mtab{}{}{UAM} \mtab{}{Oviedo}{Uniovi} \mtab{}{Santander}{IFCA} \mtab{Switzerland }{Zurich}{ETH} \mtab{}{}{UZH} \mtab{}{Villigen}{PSI} \mtab{}{Basel}{Uni Basel} \mtab{Taiwan}{Taipei}{NTU} \mtab{}{Chung--Li}{NCU} \mtab{Turkey}{Adana}{CU} \mtab{}{Ankara}{METU} \mtab{Ukraine}{Kharkov}{KFTI NASU} \mtab{}{}{ISC NASU} \mtab{}{}{KhNU} \mtab{United Kingdom }{London}{Imperial College} \mtab{}{Didcot}{RAL} \mtab{}{Bristol}{Univ.} \mtab{USA}{Ames, IA}{ISU} \mtab{}{Baltimore, MD}{JHU} \mtab{}{Batavia, IL}{Fermilab} \mtab{}{Blacksburg, VA}{Virginia Tech.} \mtab{}{Boston, MA}{BU} \mtab{}{}{NU} \mtab{}{Cambridge, MA}{MIT} \mtab{}{Chicago, IL}{UIC} \mtab{}{College Park, MD}{UM} \mtab{}{Columbus, OH}{OSU} \mtab{}{Davis, CA}{UCDavis} \mtab{}{Gainesville, FL}{UF} \mtab{}{Evanston, IL}{NU} \mtab{}{Houston, TX}{Rice Univ.} \mtab{}{Iowa City, IA}{UIowa} \mtab{}{Lincoln, NE}{UNL} \mtab{}{Livermore, CA}{LLNL} \mtab{}{Los Alamos, NM}{LANL} \mtab{}{Los Angeles, CA}{UCLA} \mtab{}{Lubbock, TX}{TTU} \mtab{}{Madison, WI}{UW-Madison} \mtab{}{Minneapolis, MN}{UofM} \mtab{}{Notre Dame, IN}{ND} \mtab{}{Oxford, MS}{UM} \mtab{}{Pasadena, CA}{Caltech} \mtab{}{Pittsburgh, PA}{Pitt} \mtab{}{Piscataway, NJ}{Rutgers} \mtab{}{Princeton, NJ}{PU} \mtab{}{Riverside, CA}{UCR} \mtab{}{Rochester, NY}{UR} \mtab{}{Tallahassee, FL}{FSU} \mtab{ }{Tuscaloosa, AA}{UA} \mtab{Uzbekistan}{Tashkent}{INP UAS} \end{intcoop} %%\newpage \TN{ 02--0--1085--2009/2013}{1}{\tscom} {Study of the Nucleon and Baryon Structure\\ at COMPASS--II, CERN and H1, DESY } {A.P.~Nagaytsev } %%\PLDDD{ I.A.~Savin} \TC{Armenia, Belarus, Belgium, Bulgaria, Canada, CERN, Czech Republic, France, Germany, Israel, Italy, Japan, Netherlands, Poland, Russia, Switzerland, United Kingdom, USA. } \begin{itemize} \item Determination of the quark spin, gluon and quark orbital momenta contributions to the nucleon spin. \item Study of spin--dependent structure functions of the proton and neutron, including transversity, and its kinematical variables dependences. \item Sum rule tests for spin--dependent structure functions of the proton and neutron, QCD tests. \item Pion and kaon polarizabilities measurements. \item Search of new bound states of qluons and quarks. \item Construction of a hadron calorimeter, a muon system and straw tracking chambers for the COMPASS--II spectrometer. \item COMPASS--II software development and support of the CERN program library at JINR. \item Study of inclusive, exclusive and semi--inclusive processes in deep inelastic scattering of muons and electrons on polarized and unpolarized targets. \item Preparation for measurements of Generalized Parton Distributions and transverse hadron structure in Drell--Yan processes. \end{itemize} %%\vspace*{4mm} {\bf Expected main results in 2013: } \begin{itemize} \item Participation in data taking in COMPASS--II spectrometer at CERN. \item Support of HCAL1 during 2013 run. \item Support of MW1 during 2013 run. \item Performance studies of the tracking detectors MWPC, STRAW, W4/5 for COMPASS--II. \item Project preparation on measurements of Generalized Parton Distributions and transverse hadron structure in Drell--Yan processes. \item Software development and simulation of the various reactions, studying in COMPASS--II. Analyzing of the COMPASS--II. data at JINR and publications preparation. \item Theoretical studies of spin effects in COMPASS--II. \item Measurement of dijet cross section and energy flow in deep--elastic scattering with a leading proton in the final state. Measurement of elastic $\rho$--meson cross section in deep--elastic scattering with a leading proton in the final state. \end{itemize} %%\begin{project} %%\item \PList{COMPASS--II}{A.P.~Nagaytsev}{1}{2011}{2013} %%\end{project}
List of projects:
  Project Leader Priority
(period of realisation)
1. COMPASS-II A.P. Nagajtsev< 1   (2011-2013)

\begin{stage} \item[I.] \PS{Experiment COMPASS}{A.P.~Nagaytsev}{\psdt\\ \psda} \item[1.] \PS{Hadron calorimeter}{ I.A.~Savin\\O.P.~Gavrishchuk}{\pspg} \PL{VBLHEP}{}{O.P.~Gavrishchuk, G.V.~Meshcheryako, N.N.~Vlasov, A.S.~Yukaev} \item[2.] \PS{Electromagnetic calorimeter}{A.P.~Nagaytsev,\\ Z.V.~Krumshtein}{\pspp\\ \pspt} \PL{VBLHEP}{}{O.P.~Gavrishchuk, G.V.~Meshcheryakov, N.N.~Vlasov, A.S.~Yukaev} \PL{DLNP}{}{I.E.~Tchirikov--Zorin, N.~Tchepurnov, N.V.~Anfimov, T.V.~Rezinko, N.~Utkin, I.~Orlov, V.V.~Tchalyshev, Z.Ya.~Sadygov} \item[3.] \PS{Muon system}{G.D.~Alekseev}{\pspg} \PL{DLNP}{}{ V.K.~Rodionov, N.I.~Zhuravlev, N.A.~Kutchinsky, V.L.~Malyshev} \item[4.] \PS{Tracking systems}{ V.D.~Peshekhonov\\G.D.~Alexeev}{\pspg} \PL{VBLHEP}{}{ V.A.~Anosov, E.A.~Garifyanov} \PL{DLNP}{}{ V.K.~Rodionov, N.I.~Zhuravlev, N.A.~Kutchinsky, V.L.~Malyshev} \item[5.] \PS{Software development.\\ Data analysis}{ E.V.~Zemlyanichkina}{\psinp} \PL{VBLHEP}{}{I.A.~Savin, V.Yu.~Alexain, D.V.~Peshekhonov, G.I.~Smirnov, A.P.~Nagaytsev, O.M.~Kuznetsov, N.N.~Vlasov, Yu.I.~Ivanshin, A.Yu.~Korzenev, M.G~Sapozhnikov N.S.~Rossijskaya, V.L.~Rapatsky, A.A.~Antonov} \PL{DLNP}{}{A.G.~Olshevsky, A.V.~Guskov, Z.V.~Krumshtein, O.Yu.~Shevtchenko, R.R. Akhunzyanov} \PL{LIT}{}{P.V.~Zrelov, V.Yu.~Lavrenteva} \item[6.] \PS{ Measurements of generalized\\ parton distributions and\\ transverse spin structure\\ in Drell--Yan processes. Development of new electro-magnetic\\ calorimeter}{A.P.~Nagaytsev\\I.A.~Savin\\O.Yu.~Shevchenko}{\psinp} \PL{VBLHEP}{}{ O.P.~Gavrishchuk, A.A~Antonov, G.V~Meshcheryakov, N.N.~Vlasov, O.M.~Kuznetsov} \PL{DLNP}{}{A.G.~Olshevskiy, Z.V. Krumshtein, A.V. Guskov} \PL{LIT}{}{P.V.~Zrelov } \PL{BLTP}{}{A.V.~Efremov, O.V.~Teryaev} \item[7.] \PS{Preparation of the project\\ on measurement of proton form--factor ratios\\ at 13--15~GeV/c}{A.P.~Nagaytsev, \\I.A.~Savin\\N.M.~Piskunov}{Project preparation} \PL{VBLHEP}{}{O.P.~Gavrishchuk, G.V.~Meshcheryakov} \item[II.] \PS{Experiment H1}{M.N.~Kapishin}{\psda} \PL{VBLHEP}{}{ V.N. Spaskov, A.N. Morozov, D.A. Nikitin} \item[III.] \PS{Theoretical studies}{ A.V.~Efremov}{\psinp} \PL{BLTP}{}{S.B.~Gerasimov, O.V.~Teryaev, A.V.~Kotikov, A.E.~Dorokhov, N.I.~Kochelev, A.M.~Sidorov} \end{stage} \begin{intcoop} \mtab{Armenia }{Yerevan}{ANL} \mtab{Belarus}{Minsk}{NC PHEP BSU} \mtab{Belgium}{Mons}{UMONS} \mtab{}{Brussels}{ULB} \mtab{Bulgaria}{Sofia}{INRNE BAS} \mtab{}{}{SU} \mtab{Canada}{Vancouver}{TRIUMF} \mtab{}{Edmonton}{U of A} \mtab{CERN}{Geneva}{} \mtab{Czech Republic}{Prague}{CTU} \mtab{France}{Saclay}{IRFU} \mtab{Germany}{Bielefeld}{Univ.} \mtab{}{Bochum}{RUB} \mtab{}{Bonn}{UniBonn} \mtab{}{Freiburg}{Univ.} \mtab{}{Hamburg}{DESY} \mtab{}{Heidelberg}{MPIK} \mtab{}{Munich}{LMU} \mtab{}{}{TUM} \mtab{}{Mainz}{JGU} \mtab{}{Erlangen}{FAU} \mtab{Israel}{Tel Aviv}{TAU} \mtab{Italy}{Turin}{INFN} \mtab{}{Trieste}{INFN} \mtab{}{Frascati}{INFN LNF} \mtab{Japan}{Chiba}{Toho Univ.} \mtab{}{Nagoya}{Nagoya Univ.} \mtab{}{Osaka}{OCU} \mtab{}{Sendai}{Tohoku Univ.} \mtab{}{Tsukuba}{KEK} \mtab{}{Yamagata}{Yamagata Univ.} \mtab{Netherlands}{Amsterdam}{ NIKHEF} \mtab{Poland}{Warsaw}{WUT} \mtab{Russia}{Moscow}{SINP MSU} \mtab{}{}{LPI RAS} \mtab{}{Moscow, Troitsk}{INR RAS} \mtab{}{Gatchina}{PNPI} \mtab{}{Protvino}{IHEP} \mtab{Switzerland}{Zurich}{UZH} \mtab{United Kingdom}{Liverpool}{Univ.} \mtab{USA}{Argonne, IL}{ANL} \mtab{}{Boulder, WY}{CU} \mtab{}{Cambridge, MA}{MIT} \mtab{}{Pasadena, CA}{Caltech} \end{intcoop} %%\newpage \TN{02--1--1086--2009/2014}{1}{\tsprg} {Strangeness in Hadronic Matter and Study of Inelastic Reactions Near Kinematical Borders\\ (Project HyperNIS)} {E.A.~Strokovsky\\E.S.~Kokoulina} \TC{Belarus, Czech Republic, Germany, Japan, Russia, Ukraine.} \TA Strangeness in hadronic matter and study of boundary effects:

search of effects of hidden intrinsic polarized sea of strange quarks in nucleon;

study of stabilizing effects of strangeness in nuclear matter and properties of the lightest hypernuclei;

search for exotic baryons with positive strangeness;

study of multi--particle dynamics in inelastic proton--nucleon interactions with extremally high multiplicity. %%\vspace*{2mm}
Expected results: