Informacja

Drogi użytkowniku, aplikacja do prawidłowego działania wymaga obsługi JavaScript. Proszę włącz obsługę JavaScript w Twojej przeglądarce.

Wyszukujesz frazę "Smirnova, O." wg kryterium: Wszystkie pola


Tytuł:
Situation Awareness for Navigation Safety Control
Autorzy:
Smirnova, O.V.
Tematy:
situation awareness
navigation safety control
safety at sea
decision-making process
navigation safety domain
decision-making support system
Decision Support System (DSS)
Pokaż więcej
Wydawca:
Uniwersytet Morski w Gdyni. Wydział Nawigacyjny
Powiązania:
https://bibliotekanauki.pl/articles/117509.pdf  Link otwiera się w nowym oknie
Opis:
Situation awareness is the key element of the decision-making process. In navigation safety domain, monitoring, control, assessment of dangerous situations, support of operators of decision-making support system should be implemented in real time. In this paper we present the problem of situation awareness applied to navigation safety control. The paper considers existing models of situation awareness and ontology-based approach for maritime situation awareness. We introduce the situation concept using infons. Finally, we give an example how use these methods for design and creation of decision-support system for navigation safety control.
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Innovative buildings and structures as a means of humanization of urban space
Autorzy:
Votinov, M.
Smirnova, O.
Tematy:
innovative buildings
humanization
urban space
Pokaż więcej
Wydawca:
Politechnika Lubelska. Wydawnictwo Politechniki Lubelskiej
Powiązania:
https://bibliotekanauki.pl/articles/389876.pdf  Link otwiera się w nowym oknie
Opis:
Innovative buildings and structures as a means of humanization of urban space are considered. Innovative buildings and structures are designed for various processes of human life. Innovative buildings are the objects of technologies, where the latest achievements in various fields of science and technology are realized. They were created gradually in the process of civilization development, but at all the stages of historical development they were distinguished by their novelty (they didn’t have analogs), their unconventional constructive and compositional space-spatial solution which provides the individual artistic image of the object. These buildings should be differentiated into historical and modern. At each stage of historical development, they were architectural objects with new qualitative characteristics. The main patterns in the formation of innovative historical and modern objects are identified. The application of the phenomenological concept in the design of innovative buildings, when the architectural environment acquires its properties depending on the spatial – physical and utilitarian – needs of a human, where a person is viewed as a functioning object, as well as spiritual-aesthetic needs, where a person is considered as a perceiving subject, becomes urgent. The aspects of the humanization of the urban environment that innovative buildings should fulfill are determined.
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Maritime Situation Monitoring for Safe Navigation on Northern Sea Route
Autorzy:
Popovich, V.V.
Smirnova, O.V.
Popovich, T.V.
Tematy:
Northern Sea Route
maritime situation monitoring
safe navigation
safety at sea
Arctic shelf
Arctic area
polar navigation
geographic information system (GIS)
Pokaż więcej
Wydawca:
Uniwersytet Morski w Gdyni. Wydział Nawigacyjny
Powiązania:
https://bibliotekanauki.pl/articles/116586.pdf  Link otwiera się w nowym oknie
Opis:
Considering growing intensity of navigation on Northern Sea Route and of continuous exploration and development of Arctic shelf, problems of maritime situation monitoring in Arctic become particularly important. Firstly, complex operational informational support of activities in Arctic is needed. Secondly, constant access to actual and valid information about hydro-meteorological, navigational and ice situations is required. Solution of stated problems entails integration, processing and analysis of large amounts of heterogeneous data. Consequently, development of unified system for situation monitoring and intellectual support is essential. Such system allows to execute operational monitoring of dangerous situations of different sort (natural or anthropogenic) that influence safety of objects in Arctic region, and to perform intellectual analysis of such situations and prompt provision of suitable recommendations.
Dostawca treści:
Biblioteka Nauki
Artykuł
Tytuł:
Measurement of the electron structure function $F_{2}^{e}$ at LEP energies
Autorzy:
Fuster, J.
Zalewska, A.
Veloso, F.
Benvenuti, A.
Cavallo, F.
Pukhaeva, N.
Todorovova, S.
Petrolini, A.
Benekos, N.
Mazzucato, F.
Moenig, K.
Treille, D.
Begalli, M.
Rovelli, T.
Meroni, C.
Sokolov, A.
Abdallah, J.
Wicke, D.
Siebel, M.
Van Vulpen, I.
Spassov, T.
Zavrtanik, D.
Ferrer, A.
Szumlak, T.
Wickens, J.
Sander, C.
Jarry, P.
Muryn, B.
Borisov, G.
Crennell, D.
De Maria, N.
Tonazzo, A.
Barker, G. J.
Garcia, C.
Berat, C.
Mandl, F.
Amato, S.
Nikolenko, M.
Ferro, F.
Ruhlmann-Kleider, V.
Asman, B.
Lesiak, T.
Adzic, P.
Liebig, W.
Tobin, M.
Matorras, F.
Mazzucato, M.
Lyons, L.
Fernandez, J.
van Remortel, N.
Andreazza, A.
Tzamarias, S.
Katsoufis, E.
Ballestrero, A.
Flagmeyer, U.
Stugu, B.
Zupan, M.
Di Ciaccio, L.
Rivero, M.
Behrmann, A.
De Boer, W.
Contri, R.
Mulders, M.
Myklebust, T.
Bertrand, D.
Blom, M.
Augustin, J. E.
Jonsson, P.
Brenner, R.
Myatt, G.
Romero, A.
Ouraou, A.
Tortosa, P.
Della Ricca, G.
Oyanguren, A.
Kapusta, F.
da Silva, T.
Parkes, C.
Ellert, M.
Ryabtchikov, D.
Abreu, P.
Piotto, E.
Orava, R.
Vitale, L.
Zimin, N. I.
Drees, J.
Vrba, V.
Winter, M.
Lutz, P.
Kouznetsov, O.
Jackson, J. N.
Sosnowski, R.
Szczekowski, M.
Moa, T.
Arnoud, Y.
Mueller, U.
Smadja, G.
Krumstein, Z.
Bonesini, M.
Augustinus, A.
Camporesi, T.
Ben-Haim, E.
Johansson, E. K.
Jungermann, L.
Grosdidier, G.
Muenich, K.
Besancon, M.
Mariotti, C.
Ask, S.
Pimenta, M.
Salmi, L.
Anjos, N.
Boyko, I.
Renton, P.
Belous, K.
Chudoba, J.
Palacios, J. P.
Castro, N.
Allport, P. P.
Trochimczuk, M.
Moreno, S.
Sisakian, A.
Eigen, G.
Liko, D.
Bowcock, T. J. W.
Cuevas, J.
Haug, S.
Rodriguez, D.
Apel, W-D.
MacNaughton, J.
Ledroit, F.
Moraes, D.
Baroncelli, A.
De Clercq, C.
Buschmann, P.
Martinez-Rivero, C.
Tome, B.
Bambade, P.
Di Simone, A.
Polok, G.
Leinonen, L.
Carena, F.
Bouquet, B.
Booth, P. S. L.
Leder, G.
Elsing, M.
Holmgren, S-O.
Podobnik, T.
Yushchenko, O.
Stanitzki, M.
Kerzel, U.
Antilogus, P.
Uvarov, V.
Gavillet, Ph.
Cossutti, F.
Vilanova, D.
Lepeltier, V.
Poireau, V.
Pozdniakov, V.
Olshevski, A.
Botner, O.
Gomez-Ceballos, G.
Reid, D.
Mundim, L.
Albrecht, T.
Van Eldik, J.
Battaglia, M.
Haag, C.
de Paula, L.
Smirnova, O.
Margoni, M.
Papadopoulou, Th. D.
Chierici, R.
Marin, J-C.
Migliore, E.
Brunet, J. M.
Tkatchev, L.
Cieslik, K.
Mastroyiannopoulos, N.
Fokitis, E.
Maltezos, S.
Costa, M. J.
Katsanevas, S.
Pierre, F.
Bluj, M.
Malek, A.
Berggren, M.
Barbier, R.
D'Hondt, J.
Nawrocki, K.
Brodet, E.
Hedberg, V.
King, B. T.
Zintchenko, A.
Passon, O.
Buschbeck, B.
Nicolaidou, R.
Hauler, F.
Turluer, M-L.
Verzi, V.
Marechal, B.
Sopczak, A.
Richard, F.
Hallgren, A.
Fanourakis, G.
Pape, L.
Hennecke, M.
Radojicic, D.
Guy, J.
Parodi, F.
Washbrook, A. J.
Onofre, A.
Salt, J.
Adam, W.
Paganoni, M.
Baillon, P.
Loukas, D.
Tabarelli, T.
Marco, J.
Doroba, K.
Wilkinson, G.
Kucharczyk, M.
Gokieli, R.
Ronchese, P.
Nemecek, S.
Oblakowska-Mucha, A.
Verdier, P.
Nassiakou, M.
Valenti, G.
Kluit, P.
Passeri, A.
Markou, A.
Chapkin, M.
Foeth, H.
Gazis, E.
De Lotto, B.
Vegni, G.
Fulda-Quenzer, F.
Leitner, R.
Matteuzzi, C.
Hamilton, K.
Hamacher, K.
Weiser, C.
Jeans, D.
Cosme, G.
Bloch, D.
Pieri, L.
Ridky, M.
Amapane, N.
Murray, W.
Baubillier, M.
Kernel, G.
Szwed, Jerzy
Allmendinger, T.
Bruckman, P.
Perrotta, A.
Jarlskog, G.
Zhuravlov, V.
Mjoernmark, U.
Montenegro, J.
Ekelof, T.
Checchia, P.
Witek, M.
Sekulin, R.
Stocchi, A.
Tyapkin, I. A.
Piedra, J.
Mitaroff, W.
Chung, S. U.
Bracko, M.
Obraztsov, V.
Schwickerath, U.
Goncalves, P.
Parzefall, U.
Chliapnikov, P.
Marco, R.
Mc Nulty, R.
Espirito Santo, M. C.
Troncon, C.
Becks, K-H.
Osterberg, K.
Fassouliotis, D.
Collins, P.
Lamsa, J.
Pol, M. E.
Rebecchi, P.
Zalewski, P.
Roudeau, P.
Venus, W.
Da Silva, W.
Palka, H.
Savoy-Navarro, A.
Graziani, E.
Morettini, P.
Perepelitsa, V.
Grzelak, K.
Wahlen, H.
Bardin, D.
Kourkoumelis, C.
Moch, M.
Feindt, M.
Kjaer,N. J.
Lipniacka, A.
Golob, B.
Sadovsky, A.
Rehn, J.
Andringa, S.
Navarria, F.
De Min, A.
Strauss, J.
Besson, N.
VanDam, P.
Timmermans, J.
Charpentier, Ph.
Szeptycka, M.
Alemany-Fernandez, R.
Peralta, L.
Tegenfeldt, F.
Houlden, M. A.
Masik, J.
Hoffman, J.
Lopes, J. H.
Lemonne, J.
Travnicek, P.
Joram, C.
Monge, R.
Kersevan, B. P.
Tristram, G.
Boonekamp, M.
Gandelman, M.
Holt, P. J.
Amaldi, U.
Kokkinias, P.
Pullia, A.
Anashkin, E.
Lopez, J. M.
Reinhardt, R.
Canale, V.
Paiano, S.
Słomiński, Wojciech
De Angelis, A.
Calvi, M.
Opis:
The hadronic part of the electron structure function $F_{2}^{e}$ has been measured for the first time, using $e^{+}e^{-} $ data collected by the DELPHI experiment at LEP, at centre-of-mass energies of $\sqrt{s}$=91.2-209.5 GeV. The data analysis is simpler than that of the measurement of the photon structure function. The electron structure function $F_{2}^{e}$ data are compared to predictions of phenomenological models based on the photon structure function. It is shown that the contribution of large target photon virtualities is significant. The data presented can serve as a cross-check of the photon structure function $F_{2}^{\gamma}$ analyses and help in refining existing parameterisations.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
Tytuł:
Flow and thermal modelling of the argon volume in the DarkSide-20k TPC
Autorzy:
Ianni, A.
Colaiuda, D.
Ravinthiran, S.
Ramirez, A.
Maricic, J.
Koulosousas, S.
Morrocchi, M.
Franco, D.
Rescigno, M.
Castellani, A.
Skorokhvatov, M.D.
Cavalcante, P.
Scioli, G.
Vyas, B.
Nieradka, G.
Jamil, A.
Roberts, A.
Puglia, S.
Scapparone, E.
Yang, C.
Aprile, E.
Lipp, J.
Chashin, S.
Plante, G.
Hamer, A.
Rubbia, A.
Ahmad, I.
Nikoloudaki, E.
Keloth, R.
Cárdenas-Montes, M.
Kimura, M.
Costa, B.S.
Atzori Corona, M.
Grilli di Cortona, G.
Sabia, M.A.
Conde Vilda, E.
Back, H.O.
Castello, P.
Derbin, A.V.
Gahan, D.
Santorelli, R.
Korga, G.
Cleveland, B.
Pralavorio, P.
Mari, S.M.
Suvorov, Y.
La Commara, M.
Zhang, Y.
Tricomi, A.
Zhu, T.
Vishneva, A.
Cargioli, N.
Williams, L.
Kuzwa, M.
Kemmerich, N.
Adhikari, P.
Díaz Mairena, D.
Gola, A.
Walczak, M.
Paternoster, G.
Giovanetti, G.K.
Muratova, V.N.
Kemp, A.
Minutoli, S.
Harrop, B.
Rudik, D.
Zani, A.
Calabrese, R.
Amaudruz, P.
Yin, J.
Manecki, S.
Hugues, T.
Pallavicini, M.
Murra, M.
Fearon, N.
Wang, Y.
Retiere, F.
Dordei, F.
Luzzi, L.
Macfadyen, O.
Milincic, R.
Mróz, Tomasz
Westerdale, S.
Spangenberg, M.
Dolganov, G.
Sulis, S.
Machulin, I.N.
Mapelli, L.
Taborda, O.
Boulay, M.G.
Merzi, S.
Morsy, A.
Devoto, A.
Nania, R.
Nikulin, I.
Organtini, P.
Pastuszak, G.
Alton, A.K.
Choudhary, S.
Xie, Y.
Musico, P.
Gulino, M.
Consiglio, L.
Barrillon, P.
Galiński, G.
Goicoechea Casanueva, V.
Czubak, Milena
Kunzé, P.
Repond, A.
Barrado Olmedo, A.
Simeone, M.
Stornelli, V.
Piacentini, S.
Rivetti, A.
Wang, H.
Zichichi, A.
Grandi, L.
Di Capua, F.
Mariani, C.
Frandini Gatti, H.
McDonald, A.B.
Leoni, A.
Marasciulli, A.
Angiolilli, M.
Gawdzik, A.
Harańczyk, Małgorzata
Van Uffelen, M.
Ellingwood, E.
Ortiz de Solórzano, A.
Santos, E.M.
Carlini, M.
Agnes, P.
Pordes, S.
Kondo, K.
Spadoni, F.
Da Rocha Rolo, M.D.
Dias, L.K.
Zuzel, Grzegorz
Dylon, F.
Dellacasa, G.
Resconi, S.
Taylor, J.
Olchanski, K.
Erjavec, T.
Gromov, M.
Auty, D.J.
Ficorella, A.
Sung, A.
Garcia Abia, P.
Unzhakov, E.V.
Buchowicz, A.
Garbini, M.
Pesudo, V.
Kotsiopoulou, L.
Razeti, M.
Vossebeld, J.
Davini, S.
Kuss, M.
Wojcik, M.
Nowak, J.
Bussino, S.
Gabriele, F.
Fiorillo, G.
Paoloni, E.
Tartaglia, R.
Cocco, V.
Cebrian, S.
Huff, D.
Dainty, A.
Lissia, M.
Grauso, G.
Ippolito, V.
Pelczar, Krzysztof
Schuckman II, F.G.
Caminata, A.
Samoylov, O.
Thieme, K.
Bottino, B.
Lidey, L.
Hubaut, F.
Mavrokoridis, K.
Bloem, M.
Alexander, T.
Park, B.
Rignanese, L.P.
De Cecco, S.
Pegoraro, P.A.
Avetisov, I.C.
Hu, J.
Vogelaar, R.B.
Cadeddu, M.
Leason, E.
Albergo, S.
Salomone, P.
Matteucci, G.
Runge, J.
Chepurnov, A.
Nessi, M.
Franchini, P.
Hackett, B.R.
Preosti, E.
Bocci, V.
Azzolini, O.
Corbett, J.
de Asmundis, R.
Pandola, L.
Rogers, G.
Lai, M.
D'Aniello, M.
Mitra, A.
Pocar, A.
Batignani, G.
Caravati, M.
Cifarelli, L.
Hollingham, J.
Thompson, A.
Wada, M.
Zabihi, A.
Semenov, D.A.
Canci, N.
Balmforth, Z.
Grobov, A.
Horikawa, S.
Torres-Lara, S.
Oleinik, A.
Testera, G.
Oleynikov, V.
Moretti, E.
Darbo, G.
Roberts, C.
Steri, A.
Gallina, G.
Martoff, C.J.
Cadoni, M.
Ragusa, F.
Fernandez Diaz, M.
Zykova, M.P.
Renshaw, A.L.
Hessel, T.
Savarese, C.
D'Auria, S.
Taylor, A.
Bonivento, W.
Papi, D.
Lychagina, O.
Ramachers, Y.
Perez, R.
Nikolopoulos, K.
Sargeant, I.
Zakhary, P.
Smith, B.
Kubankin, A.
Hallin, A.L.
Messina, A.
Gendotti, A.
Viant, T.
Manthos, I.
Muscas, C.
Sunny, C.
Smirnov, O.
Szelc, A.M.
Price, D.
Wójcik, Marcin
Smirnova, T.
Camillo, V.
Dronik, V.
Pantic, E.
Di Noto, L.
Jillings, C.
Frolov, E.
Kuźniak, M.
Bhowmick, P.
Peck, A.
Elersich, A.
Queiroga Bazetto, M.
Raffaelli, F.
Klenin, A.
Shalamova, V.
Padmanabhan, A.
Sheshukov, A.
Martinez, M.
Viel, S.
Hungerford, E.V.
Busto, J.
Di Stefano, P.
Le Guirriec, E.
Monroe, J.
Skensved, P.
Romero, L.
Santone, D.
Dionisi, C.
Stracka, S.
Galbiati, C.
Rossi, M.
Sanfilippo, S.
Pino, N.
Ave, M.
Albuquerque, I.F.
Acerbi, F.
Coadou, Y.
Blua, S.
Gallus, G.
Opis:
The DarkSide-20k dark matter experiment, currently under construction at LNGS, features a dual-phase time projection chamber (TPC) with a ∼ 50 t argon target from an underground well. At this scale, it is crucial to optimise the argon flow pattern for efficient target purification and for fast distribution of internal gaseous calibration sources with lifetimes of the order of hours. To this end, we have performed computational fluid dynamics simulations and heat transfer calculations. The residence time distribution shows that the detector is well-mixed on time-scales of the turnover time (∼ 40 d). Notably, simulations show that despite a two-order-of-magnitude difference between the turnover time and the half-life of $^{83m}$Kr of 1.83 h, source atoms have the highest probability to reach the centre of the TPC 13 min after their injection, allowing for a homogeneous distribution before undergoing radioactive decay. We further analyse the thermal aspects of dual-phase operation and define the requirements for the formation of a stable gas pocket on top of the liquid. We find a best-estimate value for the heat transfer rate at the liquid-gas interface of 62 W with an upper limit of 144 W and a minimum gas pocket inlet temperature of 89 K to avoid condensation on the acrylic anode. This study also informs the placement of liquid inlets and outlets in the TPC. The presented techniques are widely applicable to other large-scale, noble-liquid detectors.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
Tytuł:
Production, quality assurance and quality control of the SiPM Tiles for the DarkSide-20k Time Projection Chamber
Autorzy:
Hugues, T.
Frolov, E.
Raffaelli, F.
Mariani, C.
Busto, J.
D’Aniello, M.
Hackett, B. R.
Lychagina, O.
Spadoni, F.
Amaudruz, P.
Musico, P.
Skensved, P.
Di Stefano, P.
Bonivento, W.
Pallavicini, M.
Frandini Gatti, H.
Pavarani, R.
Pralavorio, P.
Yang, C.
Bloem, M.
Conde Vilda, E.
Martoff, C. J.
Coadou, Y.
Smirnova, T.
Sabia, M. A.
Braun, T.
Cocco, V.
Minutoli, S.
Mitra, A.
Oleynikov, V.
Erjavec, T.
Rescigno, M.
Ave, M.
Rossi, M.
Plante, G.
Stracka, S.
Taylor, A.
Leason, E.
Savarese, C.
Rivetti, A.
Thompson, A.
Hidalgo, C.
Pantic, E.
Price, D.
Scapparone, E.
Sharma Poudel, S.
Da Rocha Rolo, M. D.
Morrocchi, M.
Pelczar, Krzysztof
Sheshukov, A.
Sanfilippo, S.
Taborda, O.
Park, B.
Vyas, B.
Galiński, G.
Lidey, L.
Giovanetti, G. K.
Martinez, M.
Vogelaar, R. B.
Derbin, A. V.
Galbiati, C.
Adhikari, P.
Canci, N.
Garcia Abia, P.
Roberts, C.
Samoylov, O.
Cadoni, M.
Dias, L. K.
Kuźniak, M.
Gallina, G.
Bussino, S.
Ravinthiran, S.
Harrop, B.
Semenov, D. A.
Czubak, Milena
Tartaglia, R.
Zhang, Y.
Nania, R.
Ferro, L.
Franco, D.
Ramachers, Y.
Schuckman, F. G.
Smirnov, O.
Camillo, V.
Ahmad, I.
Agnes, P.
Castellani, A.
Cleveland, B.
Pocar, A.
Razeti, M.
Di Noto, L.
Santone, D.
Sestu, M.
Atzori Corona, M.
Davini, S.
Tullio, S.
Angiolilli, M.
Moretti, E.
Mróz, Tomasz
Pordes, S.
Cadeddu, M.
Elersich, A.
Grauso, G.
Nikulin, I.
Organtini, P.
Grandi, L.
Sunny, C.
Blua, S.
Colaiuda, D.
Nessi, M.
Torres-Lara, S.
Dionisi, C.
Van Uffelen, M.
Hamer, A.
Manthos, I.
Resconi, S.
Scioli, G.
Choudhary, S.
Murra, M.
Salomone, P.
Sung, A.
Preosti, E.
Dylon, F.
Steri, A.
Sargeant, I.
Díaz Mairena, D.
La Commara, M.
Maricic, J.
McDonald, A. B.
Rubbia, A.
Bhowmick, P.
Tricomi, A.
Pandola, L.
Perez, R.
Alexander, T.
Hollingham, J.
Dolganov, G.
Manecki, S.
Stornelli, V.
Balmforth, Z.
Grobov, A.
Calabrese, R.
Ritchie-Yates, A.
Runge, J.
Santos, E. M.
Bocci, V.
Dainty, A.
Ellingwood, E.
Ippolito, V.
Kuss, M.
Alton, A. K.
Nikolopoulos, K.
Thieme, K.
Barrado Olmedo, A.
Wójcik, Marcin
Skorokhvatov, M. D.
Walczak, M.
Marasciulli, A.
Cargioli, N.
Auty, D. J.
Piacentini, S.
Suvorov, Y.
Lai, M.
Messina, A.
Viant, T.
Zichichi, A.
Carlini, M.
Viel, S.
Consiglio, L.
Rogers, G.
Hubaut, F.
Zabihi, A.
Jillings, C.
Caminata, A.
Kubankin, A.
Darbo, G.
Kemp, A.
de Solórzano, A. Ortiz
Rudik, D.
Smith, B.
Retiere, F.
Wada, M.
Pino, N.
Koulosousas, S.
Cortez, A. F. V.
Machts, I.
Mari, S. M.
Padmanabhan, A.
Rignanese, L. P.
Vishneva, A.
Cárdenas-Montes, M.
Ficorella, A.
Nieradka, G.
Peck, A.
Wang, Y.
Yin, J.
Hu, J.
Leoni, A.
Hallin, A. L.
Le Guirriec, E.
Macfadyen, O.
Chashin, S.
Puglia, S.
Costa, B. S.
Ventura, P.
Kuzwa, M.
Monroe, J.
Grilli di Cortona, G.
Cavalcante, P.
Back, H. O.
Gulino, M.
Pastuszak, G.
Albergo, S.
Renshaw, A. L.
Romero, L.
Bottino, B.
Gabriele, F.
Taylor, J.
Huff, D.
Williams, L.
Zykova, M. P.
Goicoechea Casanueva, V.
Lipp, J.
Zakhary, P.
Vossebeld, J.
Cifarelli, L.
Kotsiopoulou, L.
D’Auria, S.
Milincic, R.
Ramirez, A.
Gola, A.
Machulin, I. N.
Gromov, M.
Korga, G.
Paoloni, E.
Unzhakov, E. V.
Repond, A.
Testera, G.
Dellacasa, G.
Gendotti, A.
Pronesti, M.
Gawdzik, A.
Papi, D.
Kemmerich, N.
Matteucci, G.
Fernandez Diaz, M.
Fleming, D.
Horikawa, S.
Nowak, J.
Keloth, R.
Roberts, A.
Mapelli, L.
Franchini, P.
Spangenberg, M.
Chepurnov, A.
Cebrian, S.
Mavrokoridis, K.
Hessel, T.
Shalamova, V.
Santorelli, R.
Szelc, A. M.
Luzzi, L.
Ianni, A.
Kondo, K.
Lissia, M.
Morsy, A.
Harańczyk, Małgorzata
Zuzel, Grzegorz
Paternoster, G.
Kunzé, P.
Nikoloudaki, E.
Oleinik, A.
Wojcik, M.
Aprile, E.
de Asmundis, R.
Pesudo, V.
Boulay, M. G.
Buchowicz, A.
Westerdale, S.
Muratova, V. N.
Simeone, M.
Zani, A.
Azzolini, O.
Kimura, M.
Fiorillo, G.
Devoto, A.
Hungerford, E. V.
Queiroga Bazetto, M.
Olchanski, K.
Gahan, D.
Klenin, A.
Ragusa, F.
De Cecco, S.
Dronik, V.
Acerbi, F.
Dordei, F.
Jamil, A.
Barrillon, P.
Caravati, M.
Albuquerque, I. F.
Merzi, S.
Zhu, T.
Avetisov, I. C.
Garbini, M.
Fearon, N.
Batignani, G.
Opis:
The DarkSide-20k dark matter direct detection experiment will employ a 21 m$^{2}$ silicon photomultiplier (SiPM) array, instrumenting a dual-phase 50 tonnes liquid argon Time Projection Chamber (TPC). SiPMs are arranged into modular photosensors called Tiles, each integrating 24 SiPMs onto a printed circuit board (PCB) that provides signal amplification, power distribution, and a single-ended output for simplified readout. Tiles are further grouped into Photo-Detector Units (PDUs). This paper details the production of the Tiles and the Quality Assurance and Quality Control (QA-QC) protocol established to ensure their performance and uniformity. The production and QA-QC of the Tiles are carried out at Nuova Officina Assergi (NOA), an ISO-6 clean room facility at LNGS. This process includes wafer-level cryogenic characterisation, precision die attaching, wire bonding, and extensive electrical and optical validation of each Tile. The overall production yield exceeds 83.5%, matching the requirements of the DarkSide-20k production plan. These results validate the robustness of the Tile design and its suitability for operation in a cryogenic environment.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
Tytuł:
DarkSide-20k sensitivity to light dark matter particles
Autorzy:
Hugues, T.
Busto, J.
Bonivento, W.
Tedesco, S.
Smirnova, T.
Mitra, A.
Stracka, S.
Ave, M.
Sheshukov, A.
Scapparone, E.
Martinez, M.
Vogelaar, R. B.
Canci, N.
Gallina, G.
Semenov, D. A.
Nania, R.
Ramachers, Y.
Ahmad, I.
Castellani, A.
Razeti, M.
Cleveland, B.
Atzori Corona, M.
Davini, S.
Cadeddu, M.
Elersich, A.
Organtini, P.
Grandi, L.
Blua, S.
Pegoraro, P. A.
Dionisi, C.
Van Uffelen, M.
Sung, A.
Maricic, J.
Bhowmick, P.
Tricomi, A.
Pandola, L.
Manecki, S.
Ghisi, A.
Santos, E. M.
Thieme, K.
Alton, A. K.
Skorokhvatov, M. D.
Marasciulli, A.
Piacentini, S.
Viel, S.
Hubaut, F.
Zabihi, A.
Darbo, G.
Pino, N.
Cárdenas-Montes, M.
Chashin, S.
Kuzwa, M.
Gulino, M.
Albergo, S.
Gabriele, F.
Cifarelli, L.
D’Auria, S.
Korga, G.
Walczak, M. B.
Kachru, P.
Kunzé, P.
Oleinik, A.
Boulay, M. G.
Simeone, M.
Azzolini, O.
Kimura, M.
Fiorillo, G.
Olchanski, K.
Murphy, M.
Acerbi, F.
Kondo, K.
Avetisov, I. C.
Santone, D.
D’Aniello, M.
Di Stefano, P.
Jois, S.
Sulis, S.
Yang, C.
Coadou, Y.
Poehlmann, M.
Cocco, V.
Minutoli, S.
Rescigno, M.
Thompson, A.
Pantic, E.
Pelczar, Krzysztof
Taborda, O.
Derbin, A. V.
Ardito, R.
Kuźniak, M.
Dias, L. K.
Ravinthiran, S.
Wang, H.
Harrop, B.
Zhang, Y.
Smirnov, O.
Camillo, V.
Agnes, P.
Di Noto, L.
Mróz, Tomasz
Schillaci, G.
Nessi, M.
Hamer, A.
Manthos, I.
Di Ludovico, A.
La Commara, M.
McDonald, A. B.
Rubbia, A.
Cela Ruiz, J. M.
Calabrese, R.
Ellingwood, E.
Wójcik, Marcin
Zichichi, A.
Kendziora, C. L.
Hallin, A.
Rudik, D.
Smith, B.
Koulosousas, S.
Ortiz de Solórzano, A.
Hu, J.
Leoni, A.
Wright, T.
Monroe, J.
Grilli di Cortona, G.
Cavalcante, P.
Back, H. O.
Bottino, B.
Zakhary, P.
Vossebeld, J.
Ramirez, A.
Unzhakov, E. V.
Dellacasa, G.
Gawdzik, A.
Roberts, A.
Matteucci, G.
Fernandez Diaz, M.
Horikawa, S.
Franchini, P.
Mavrokoridis, K.
Santorelli, R.
Lissia, M.
Nikoloudaki, E.
Aprile, E.
Pesudo, V.
Devoto, A.
De Cecco, S.
Dronik, V.
Garbini, M.
Batignani, G.
Spadoni, F.
Frolov, E.
Hackett, B. R.
Lychagina, O.
Musico, P.
Pralavorio, P.
Martoff, C. J.
Rossi, M.
Oleynikov, V.
Erjavec, T.
Plante, G.
Taylor, A.
Leason, E.
Rivetti, A.
Vyas, B.
Da Rocha Rolo, M. D.
Sanfilippo, S.
Galiński, G.
Giovanetti, G. K.
Adhikari, P.
Samoylov, O.
Bussino, S.
Xie, Y.
Czubak, Milena
Tartaglia, R.
Castello, P.
Franco, D.
Moretti, E.
Guerzoni, M.
Grauso, G.
Sunny, C.
Torres-Lara, S.
Murra, M.
Citterio, M.
Albuquerque, I. F. M.
Hucker, J.
Balmforth, Z.
Capra, A.
Grobov, A.
Bocci, V.
Ippolito, V.
Lai, M.
Messina, A.
Viant, T.
Wojaczyński, R.
Jillings, C.
Kubankin, A.
Stefanizzi, R.
Rignanese, L. P.
Vishneva, A.
Ficorella, A.
Peck, A.
Nieradka, G.
Wang, Y.
Yin, J.
Le Guirriec, E.
Costa, B. S.
Pastuszak, G.
Renshaw, A. L.
Romero, L.
Taylor, J.
Tonazzo, A.
Williams, L.
Zykova, M. P.
Perotti, F.
Kotsiopoulou, L.
Gola, A.
Testera, G.
Gendotti, A.
Ding, X.
Kemmerich, N.
Nowak, J.
Chepurnov, A.
Cebrian, S.
Zuzel, Grzegorz
Paternoster, G.
Buchowicz, A.
Westerdale, S.
Muratova, V. N.
Zani, A.
Ragusa, F.
Jamil, A.
Barrillon, P.
Caravati, M.
Zhu, T.
De Guido, G.
Mariani, C.
Amaudruz, P.
Skensved, P.
Pallavicini, M.
Frandini Gatti, H.
Sandford, E.
Conde Vilda, E.
Savarese, C.
Muscas, C.
Price, D.
Morrocchi, M.
Lidey, L.
Galbiati, C.
Garcia Abia, P.
Roberts, C.
Cadoni, M.
Pellegrini, L. A.
Gallus, G.
Pocar, A.
Angiolilli, M.
Pordes, S.
Mclaughlin, J.
Colaiuda, D.
Scioli, G.
Salomone, P.
Steri, A.
Sotnikov, A.
Díaz Mairena, D.
Perez, R.
Alexander, T.
Dolganov, G.
Stornelli, V.
Wojcik, M.
Guo, C.
Kuss, M.
Nikolopoulos, K.
Barrado Olmedo, A.
Suvorov, Y.
Cargioli, N.
Auty, D. J.
Vallivilayil, T. J.
Carlini, M.
Consiglio, L.
Moioli, S.
Rogers, G.
Caminata, A.
Kemp, A.
Retiere, F.
Mari, S. M.
Macfadyen, O.
Puglia, S.
Hill, S.
Goicoechea Casanueva, V.
Machulin, I. N.
Paoloni, E.
Gromov, M.
Sabia, M.
Papi, D.
Di Capua, F.
Keloth, R.
Schuckman II, F. G.
Mapelli, L.
Spangenberg, M.
Shalamova, V.
Hessel, T.
Szelc, A. M.
Luzzi, L.
Ianni, A.
Cintas, D.
Harańczyk, Małgorzata
Velazquez-Fernandez, L.
Hungerford, E. V.
Queiroga Bazetto, M.
Gahan, D.
Dordei, F.
Merzi, S.
Milincic, R.
Opis:
The dual-phase liquid argon time projection chamber is presently one of the leading technologies to search for dark matter particles with masses below 10 GeV c$^{−2}$. This was demonstrated by the DarkSide-50 experiment with approximately 50 kg of low-radioactivity liquid argon as target material. The next generation experiment DarkSide-20k, currently under construction, will use 1,000 times more argon and is expected to start operation in 2027. Based on the DarkSide-50 experience, here we assess the DarkSide-20k sensitivity to models predicting light dark matter particles, including Weakly Interacting Massive Particles (WIMPs) and sub-GeV c$^{−2}$ particles interacting with electrons in argon atoms. With one year of data, a sensitivity improvement to dark matter interaction cross-sections by at least one order of magnitude with respect to DarkSide-50 is expected for all these models. A sensitivity to WIMP–nucleon interaction cross-sections below 1 × 10$^{−42}$ cm$^{2}$ is achievable for WIMP masses above 800 MeV c$^{−2}$. With 10 years exposure, the neutrino fog can be reached for WIMP masses around 5 GeV c$^{−2}$.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł
Tytuł:
Quality assurance and quality control of the 26 m$^{2}$ SiPM production for the DarkSide-20k dark matter experiment
Autorzy:
Ianni, A.
Colaiuda, D.
Hackett, B. R.
Ramirez, A.
Maricic, J.
Koulosousas, S.
Machulin, I. N.
Franco, D.
Cintas, D.
Morrocchi, M.
Ravinthiran, S.
Albuquerque, I. F.
Rescigno, M.
Stefano, P. Di
Semenov, D. A.
Cavalcante, P.
Scioli, G.
Alton, A. K.
Vyas, B.
Boulay, M. G.
Nieradka, G.
de As mundis, R.
Jamil, A.
Roberts, A.
Puglia, S.
Stefanizzi, R.
D’Auria, S.
Scapparone, E.
Yang, C.
Aprile, E.
Martoff, C. J.
Chashin, S.
Plante, G.
Hamer, A.
Rubbia, A.
Ahmad, I.
Nikoloudaki, E.
Keloth, R.
Kimura, M.
Atzori Corona, M.
Grilli di Cortona, G.
Conde Vilda, E.
Sotnikov, A.
Castello, P.
Poehlmann, M.
Gahan, D.
Santorelli, R.
Korga, G.
Costa, B. S.
Cleveland, B.
Noto, L. Di
Pralavorio, P.
Suvorov, Y.
La Commara, M.
Zhang, Y.
Tricomi, A.
Zhu, T.
Vishneva, A.
Cargioli, N.
Williams, L.
Kuzwa, M.
Kemmerich, N.
Adhikari, P.
Gola, A.
Walczak, M.
Paternoster, G.
Kemp, A.
Minutoli, S.
Rudik, D.
Zani, A.
Calabrese, R.
Amaudruz, P.
Yin, J.
Unzhakov, E. V.
Manecki, S.
Hugues, T.
Pallavicini, M.
Murra, M.
Fearon, N.
Santos, E. Moura
Wang, Y.
Retiere, F.
Dordei, F.
Luzzi, L.
Macfadyen, O.
Milincic, R.
Mróz, Tomasz
Westerdale, S.
Spangenberg, M.
Dolganov, G.
Sulis, S.
Skorokhvatov, M. D.
Taborda, O.
Cela Ruiz, J.
Merzi, S.
Organtini, P.
Pastuszak, G.
Galiski, G.
Derbin, A. V.
Nania, R.
Xie, Y.
Zichichi, A.
Musico, P.
Gulino, M.
Consiglio, L.
Ortiz de Solrzano, A.
Barrillon, P.
Hungerford, E. V.
Goicoechea Casanueva, V.
Czubak, Milena
Stornelli, V.
Simeone, M.
Barrado Olmedo, A.
Piacentini, S.
Rivetti, A.
Wang, H.
Grandi, L.
Mariani, C.
Ippoliti, G.
Frandini Gatti, H.
Leoni, A.
Marasciulli, A.
McDonald, A. B.
Giovanetti, G. K.
Angiolilli, M.
Gawdzik, A.
Harańczyk, Małgorzata
Van Uffelen, M.
Ellingwood, E.
Zykova, M. P.
Carlini, M.
Agnes, P.
Capua, F. Di
Kondo, K.
Pordes, S.
Spadoni, F.
Zuzel, Grzegorz
Szelc, A. M.
Dellacasa, G.
Hallin, A.
Resconi, S.
Taylor, J.
Olchanski, K.
Erjavec, T.
Gromov, M.
Ficorella, A.
Sung, A.
Auty, D. J.
Garcia Abia, P.
Buchowicz, A.
Garbini, M.
Guo, C.
Kotsiopoulou, L.
Pesudo, V.
Razeti, M.
Vossebeld, J.
Davini, S.
Avetisov, I. C.
Kuss, M.
Mazza, E.
Wojcik, M.
Nowak, J.
Wojaczyski, R.
Bussino, S.
Gabriele, F.
Kester, Carlos E.
Fiorillo, G.
Paoloni, E.
Tartaglia, R.
Cocco, V.
Cebrian, S.
Lissia, M.
Grauso, G.
Ippolito, V.
Pelczar, Krzysztof
Caminata, A.
Samoylov, O.
Pegoraro, P. A.
Bottino, B.
Lidey, L.
Schuckman, F. G.
Hubaut, F.
Mavrokoridis, K.
Back, H. O.
Kunze, P.
Bloem, M.
Thieme, K.
Alexander, T.
Vogelaar, R. B.
De Cecco, S.
Hu, J.
Cadeddu, M.
Da Rocha Rolo, M. D.
Leason, E.
Albergo, S.
Salomone, P.
Matteucci, G.
Murphy, M.
Chepurnov, A.
Nessi, M.
Franchini, P.
Preosti, E.
Sabia, M.
Bocci, V.
Azzolini, O.
Pandola, L.
Hucker, J.
Rogers, G.
Lai, M.
Mitra, A.
Pocar, A.
Batignani, G.
Caravati, M.
Cifarelli, L.
Thompson, A.
Wada, M.
Cardenas-Montes, M.
Capra, A.
Wright, T.
Canci, N.
Zabihi, A.
Balmforth, Z.
Grobov, A.
Horikawa, S.
Renshaw, A. L.
Torres-Lara, S.
Oleinik, A.
Testera, G.
Oleynikov, V.
Moretti, E.
Darbo, G.
Roberts, C.
Steri, A.
Gallina, G.
Cadoni, M.
Ragusa, F.
Fernandez Diaz, M.
Rignanese, L. P.
Hessel, T.
Savarese, C.
Taylor, A.
Bonivento, W.
Papi, D.
Lychagina, O.
Mari, S. M.
Perez, R.
Nikolopoulos, K.
Ramachers, Y.
Zakhary, P.
Smith, B.
Kubankin, A.
Messina, A.
Gendotti, A.
Viant, T.
Manthos, I.
Muscas, C.
Sunny, C.
Smirnov, O.
Dias, L. K.
Price, D.
Smirnova, T.
Camillo, V.
Dronik, V.
Pantic, E.
Jillings, C.
Frolov, E.
Kuźniak, M.
Bhowmick, P.
Elersich, A.
Queiroga Bazetto, M.
Sheshukov, A.
Viel, S.
Martinez, M.
Busto, J.
Monroe, J.
Le Guirriec, E.
Skensved, P.
Romero, L.
Santone, D.
Dionisi, C.
Margutti, G.
Stracka, S.
Galbiati, C.
Rossi, M.
Sanfilippo, S.
Pino, N.
Ave, M.
Wójcik, Marcin
Acerbi, F.
Muratova, V. N.
Coadou, Y.
Blua, S.
Gallus, G.
Opis:
DarkSide-20k is a novel liquid argon dark matter detector currently under construction at the Laboratori Nazionali del Gran Sasso (LNGS) of the Istituto Nazionale di Fisica Nucleare (INFN) that will push the sensitivity for Weakly Interacting Massive Particle (WIMP) detection into the neutrino fog. The core of the apparatus is a dual-phase Time Projection Chamber (TPC), filled with 50 tonnes of low radioactivity underground argon (UAr) acting as the WIMP target. NUV-HD-cryo Silicon Photomultipliers (SiPM)s designed by Fondazione Bruno Kessler (FBK) (Trento, Italy) were selected as the photon sensors covering two 10.5 m$^{2}$ Optical Planes, one at each end of the TPC, and a total of 5 m$^{2}$ photosensitive surface for the liquid argon veto detectors. This paper describes the Quality Assurance and Quality Control (QA/QC) plan and procedures accompanying the production of FBK NUV-HD-cryo SiPM wafers manufactured by LFoundry s.r.l. (Avezzano, AQ, Italy). SiPM characteristics are measured at 77 K at the wafer level with a custom-designed probe station. As of March 2025, 1314 of the 1400 production wafers (94% of the total) for DarkSide-20k were tested. The wafer yield is 93.2 $\pm$ 2.5%, which exceeds the 80% specification defined in the original DarkSide-20k production plan.
Dostawca treści:
Repozytorium Uniwersytetu Jagiellońskiego
Artykuł

Ta witryna wykorzystuje pliki cookies do przechowywania informacji na Twoim komputerze. Pliki cookies stosujemy w celu świadczenia usług na najwyższym poziomie, w tym w sposób dostosowany do indywidualnych potrzeb. Korzystanie z witryny bez zmiany ustawień dotyczących cookies oznacza, że będą one zamieszczane w Twoim komputerze. W każdym momencie możesz dokonać zmiany ustawień dotyczących cookies