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<h2>Oral plenary lectures</h2>
<ul>
<li>Elementary particle physics and cosmology 2018, Mikhail Zelenyy. Design of an orbital detector of solar cosmic rays. (<a href="https://belle.lebedev.ru/conf_mipt_2019/?page_id=616">https://belle.lebedev.ru/conf_mipt_2019/?page_id=616</a>)</li>
<li>ACAT-2019, Alexander Nozik, DataForge: declarative approach to scientific data processing automation. (<a href="https://indico.cern.ch/event/708041/contributions/3276140/">https://indico.cern.ch/event/708041/contributions/3276140/</a>)</li>
<li>ACAT-2019, Alexander Nozik, Kotlin - new language for scientific programming. (<a href="https://indico.cern.ch/event/708041/contributions/3276141/">https://indico.cern.ch/event/708041/contributions/3276141/</a>)</li>
<li>KotlinConf-2019, Kotlin for science, Alexander Nozik. (<a href="https://kotlinconf.com/talks/5-dec/114818">https://kotlinconf.com/talks/5-dec/114818</a>)</li>
<li>Nucleus-2019,  Almaz Fazliakhmetov, Neutrino interaction with the Ga-Ge system and nuclear resonances</li>
<li>Nucleus-2019,  Grigory Koroteev, Decomposition of the charge-exchange strength functions for 76Ge and 74Ge isotopes</li>
<li>AYSS-2019, Alexander Nozik, Kotlin language for science and kmath library. (<a href="https://indico.jinr.ru/event/756/session/4/contribution/316">https://indico.jinr.ru/event/756/session/4/contribution/316</a>)</li>
<li>AYSS-2019, Mikhail Zelenyy, Reactor like TGE model. (<a href="https://indico.jinr.ru/event/756/session/16/contribution/325">https://indico.jinr.ru/event/756/session/16/contribution/325</a>)</li>
<li>Particle and Cosmology 16th Baksan School on Astroparticle Physics, Egor Stadnichuk, Thundestorms and particle physics. (<a href="http://www.inr.ac.ru/~school/">http://www.inr.ac.ru/~school/</a>)</li>
<li>MEDEX'19, Grigory Koroteev, (<a href="https://indico.utef.cvut.cz/indico/event/15/timetable/#20190531.detailed">https://indico.utef.cvut.cz/indico/event/15/timetable/#20190531.detailed</a>)</li>
<li>TEPA 2019, Egor Stadnichuk, Completely random reactor model. (<a href="http://crd.yerphi.am/TEPA_2019">http://crd.yerphi.am/TEPA_2019</a>)</li>
<li>TEPA 2019, Timur Khamitov, Simulation of VHF signal from RREA. (<a href="http://crd.yerphi.am/TEPA_2019">http://crd.yerphi.am/TEPA_2019</a>)</li>
</ul>
<h2>Publications:</h2>
<table className="table">
<tr>
<td><strong>Title</strong>
</td>
<td><strong>Authors</strong>
</td>
<td><strong>Journal</strong>
</td>
</tr>
<tr>
<td>Cross Sections for Solar-Neutrino Capture by the 76Ge Nucleus and High-Lying Gamow—Teller Resonances
</td>
<td>Vyborov, A.K., Inzhechik, L.V., Koroteev, G.A., Lutostansky, Y.S., Tikhonov, V.N., Fazliakhmetov, A.N.
</td>
<td>Physics of Atomic Nuclei
</td>
</tr>
<tr>
<td>Direct Search for keV-Sterile Neutrino in Nuclear Decay. Troitsk Nu-Mass (Scientific Summary)
</td>
<td>Nozik, A.A., Pantuev, V.S.
</td>
<td>JETP Letters
</td>
</tr>
<tr>
<td>Shape-based event pileup separation in Troitsk nu-mass experiment
</td>
<td>Chernov, V., Nozik, A.
</td>
<td>Journal of Instrumentation
</td>
</tr>
<tr>
<td>Reactor like TGE model
</td>
<td>Zelenyy, M., Nozik, A., Stadnichuk, E.
</td>
<td>AIP Conference Proceedings
</td>
</tr>
<tr>
<td>Probing Majorana neutrinos with double-β decay
</td>
<td>Gerda collaboration, включая Lev Inzhechik
</td>
<td>Science
</td>
</tr>
<tr>
<td>Kotlin language for science and Kmath library
</td>
<td>Nozik, A.
</td>
<td>AIP Conference Proceedings
</td>
</tr>
<tr>
<td>Physics potential of the International Axion Observatory (IAXO)
</td>
<td>IAXO collaboration, включая Alexander Nozik
</td>
<td>Journal of Cosmology and Astroparticle Physics
</td>
</tr>
<tr>
<td>Chemical Composition Analysis for X-Ray Transport Container Scans
</td>
<td>Zelenaya, A., Zelenyy, M., Turinge, A.A., Nedorezov, V.G.
</td>
<td>Physics of Particles and Nuclei
</td>
</tr>
<tr>
<td>The Long-Term Stability of a Fused-Silica Proportional Counter
</td>
<td>Abdurashitov, D.N., Chernov, V.G.
</td>
<td>Instruments and Experimental Techniques
</td>
</tr>
<tr>
<td>Statistical time analysis for regular events with high count rate
</td>
<td>Nozik, A.
</td>
<td>Journal of Instrumentation
</td>
</tr>
<tr>
<td>Cross Section of Solar Neutrino Capture by 76Ge Nuclei
</td>
<td>Vyborov, A.K., Inzhechik, L.V., Koroteev, G.A., Lutostansky, Y.S., Tikhonov, V.N., Fazliakhmetov, A.N.
</td>
<td>Bulletin of the Russian Academy of Sciences: Physics
</td>
</tr>
<tr>
<td>Cosmic-ray muon flux at Canfranc Underground Laboratory
</td>
<td>Trzaska, W.H., Slupecki, M., Bandac, I., Bayo, A., Bettini, A., Bezrukov, L., Enqvist, T., Fazliakhmetov, A., Ianni, A., Inzhechik, L., Joutsenvaara, J., Kuusiniemi, P., Loo, K., Lubsandorzhiev, B., Nozik, A., Peña Garay, C., Poliakova, M.
</td>
<td>European Physical Journal C
</td>
</tr>
<tr>
<td>Designing Proton and Electron Detector for Monitoring Solar Cosmic Rays
</td>
<td>Zelenyy, M.E., Stadnichuk, E.M., Nozik, A.A., Zimovec, I.V., Kudinov, A.G., Reznikov, I.K.
</td>
<td>Bulletin of the Lebedev Physics Institute
</td>
</tr>
</table>
<h1>2018</h1>
<h2>Oral plenary reports:</h2>
<ul>
<li>Nozik, <a href="https://q2018.inr.ac.ru/event/1/contributions/9/">Status and perspectives of the Troitsk nu-mass experiment</a>. QUARKS-2018, 28.05.2018</li>
<li>Egor Stadnichuk , Mikhail Zelenyy, Alexander Nozik, <a href="https://www1.yerphi.am/index.php/tepa-2018/183-scientific-program/817-scientific-program">Monte Carlo simulation of the Relativistic feedback discharge model (RFDM)</a>, TEPA-2018 (THUNDERSTORMS &#x26; ELEMENTARY PARTICLE ACCELERATION),. September 17-20, 2018 Nor Amberd, Armenia</li>
<li>M. Zelenyy, A. Zelenaya, A.A.Turinge, V.G. Nedorezov,<a href="http://www.inr.ac.ru/~pnlab/emin2018/">Chemical composition analysis for X-ray transport container scans</a>, XV International Seminar on Electromagnetic Interactions of Nuclei
Moscow, October 08-11, 2018.</li>
</ul>
<h2>Publications:</h2>
<table className="table">
<thead>
<tr>
<th><strong>Title</strong></th>
<th><strong>Authors</strong></th>
<th><strong>Publication title</strong></th>
<th><strong>Publication date</strong></th>
<th><strong>Impact Factor</strong></th>
</tr>
</thead>
<tbody>
<tr>
<td><em>DataForge: Modular platform for data storage and analysis</em></td>
<td><em>Nozik A.</em></td>
<td><em>The European Physical Journal Conferences 177:05003</em></td>
<td><em>01.2018</em></td>
<td><em>0,3</em></td>
</tr>
<tr>
<td><em>Application of Turchin&#39;s method of statistical regularization</em></td>
<td><em>Zelenyy M, Poliakova M. Nozik A., Khudyakov A.</em></td>
<td><em>The European Physical Journal Conferences 177:07005</em></td>
<td><em>01.2018</em></td>
<td><em>0.3</em></td>
</tr>
<tr>
<td><em>Processing of higher count rates in Troitsk nu-mass experiment</em></td>
<td><em>Nozik A., Chernov V.</em></td>
<td><em>The European Physical Journal Conferences 177:04009</em></td>
<td><em>01.2018</em></td>
<td><em>0.3</em></td>
</tr>
<tr>
<td>Cross section of capture of solar neutrinos by a nucleus 76<em>Ge</em></td>
<td><em>Vyborov, A.K., Inzhechik, L.V., Koroteev, G.A., Lutostansky, Y.S., Tikhonov, V.N., Fazliakhmetov, A.N.</em></td>
<td><em>RAS News</em></td>
<td><em>Accepted for publication</em></td>
<td><em>0,465</em></td>
</tr>
<tr>
<td><em>Improved Limit on Neutrinoless Double- β β Decay of 76 Ge from GERDA Phase II</em></td>
<td><em>Gerda collaboration, включая</em> <strong>Lev Inzhechik</strong></td>
<td><em>Phys.Rev.Lett. 120 (2018) no.13, 132503</em></td>
<td><em>05.2018</em></td>
<td><em>7.7</em></td>
</tr>
<tr>
<td><em>GERDA results and the future perspectives for the neutrinoless double beta decay search using 76 Ge</em></td>
<td><em>Gerda collaboration, включая</em> <strong>Lev Inzhechik</strong></td>
<td><em>Int.J.Mod.Phys. A33 (2018) no.09, 1843004</em></td>
<td><em>03.2018</em></td>
<td><em>1.3</em></td>
</tr>
<tr>
<td>Structures of the intracloud electric field supporting origin of long-lasting thunderstorm ground enhancements</td>
<td>A.CHILINGARIAN et al.,<em>включая</em> <em>M. Zelenyy</em></td>
<td>PHYS. REV. D 98, 082001 (2018)</td>
<td><em>08.2018</em></td>
<td><em>4.4</em></td>
</tr>
<tr>
<td><a href="https://doi.org/10.1016/j.nima.2017.12.026">Silicon drift detector prototypes for the keV-scale sterile neutrino search with TRISTAN</a></td>
<td>Altenmüller, Konrad, et al. &quot;Silicon drift detector prototypes for the keV-scale sterile neutrino search with TRISTAN.&quot;</td>
<td>NIM A(2018): 333-337.</td>
<td><em>12.2018</em></td>
<td>1.3</td>
</tr>
</tbody>
</table>
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