Search Results - "Nieradka, G"

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  3. 3

    SiPM cross-talk in liquid argon detectors by Boulay, M. G., Camillo, V., Canci, N., Choudhary, S., Consiglio, L., Flammini, A., Galbiati, C., Ghiano, C., Gola, A., Horikawa, S., Kachru, P., Kochanek, I., Kondo, K., Korga, G., Kuźniak, M., Mazzi, A., Moharana, A., Nieradka, G., Paternoster, G., Razeto, A., Sablone, D., Thorpe, T. N., Türkoğlu, C., Wang, H., Rescigno, M., Sanfilippo, S.

    Published in Frontiers in physics (16-05-2023)
    “…SiPM-based readouts are becoming the standard for light detection in particle detectors given their superior resolution and ease of use with respect to vacuum…”
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  4. 4

    Frequency-Dependent Squeezed Vacuum Source for the Advanced Virgo Gravitational-Wave Detector by Acernese, F, Agathos, M, Ain, A, Albanesi, S, Alléné, C, Allocca, A, Amato, A, Amra, C, Andia, M, Andrade, T, Andres, N, Andrés-Carcasona, M, Andrić, T, Ansoldi, S, Antier, S, Apostolatos, T, Appavuravther, E Z, Arène, M, Arnaud, N, Assiduo, M, Melo, S Assis de Souza, Astone, P, Aubin, F, Babak, S, Badaracco, F, Bagnasco, S, Baird, J, Baka, T, Ballardin, G, Baltus, G, Banerjee, B, Barneo, P, Barone, F, Barsuglia, M, Barta, D, Basti, A, Bawaj, M, Bazzan, M, Beirnaert, F, Bejger, M, Benedetto, V, Berbel, M, Bernuzzi, S, Bersanetti, D, Bertolini, A, Bhardwaj, U, Bianchi, A, Bilicki, M, Bini, S, Bischi, M, Bitossi, M, Bizouard, M-A, Bobba, F, Boër, M, Bogaert, G, Boileau, G, Boldrini, M, Bonavena, L D, Bondarescu, R, Bondu, F, Bonnand, R, Boschi, V, Boudart, V, Bouffanais, Y, Bozzi, A, Bradaschia, C, Braglia, M, Branchesi, M, Breschi, M, Briant, T, Brillet, A, Brooks, J, Bruno, G, Bucci, F, Bulashenko, O, Bulik, T, Bulten, H J, Buscicchio, R, Buskulic, D, Buy, C, Cabras, G, Cabrita, R, Cagnoli, G, Calloni, E, Canepa, M, Santoro, G Caneva, Cannavacciuolo, M, Capocasa, E, Carapella, G, Carbognani, F, Carpinelli, M, Carullo, G, Diaz, J Casanueva, Casentini, C, Caudill, S, Cavalieri, R, Cella, G, Cerdá-Durán, P, Cesarini, E, Chaibi, W

    Published in Physical review letters (28-07-2023)
    “…In this Letter, we present the design and performance of the frequency-dependent squeezed vacuum source that will be used for the broadband quantum noise…”
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  5. 5

    Constraints on directionality effect of nuclear recoils in a liquid argon time projection chamber by Agnes, P., Ahmad, I., Albergo, S., Albuquerque, I. F. M., Alexander, T., Alton, A. K., Amaudruz, P., Corona, M. Atzori, Ave, M., Avetisov, I. Ch, Azzolini, O., Back, H. O., Balmforth, Z., Barrado-Olmedo, A., Barrillon, P., Basco, A., Batignani, G., Bocci, V., Bonivento, W. M., Bottino, B., Boulay, M. G., Busto, J., Cadeddu, M., Caminata, A., Canci, N., Cappello, G., Capra, A., Caprioli, S., Caravati, M., Cargioli, N., Carlini, M., Castello, P., Cataudella, V., Cavalcante, P., Cavuoti, S., Cebrian, S., Ruiz, J. M. Cela, Chashin, S., Chepurnov, A., Chyhyrynets, E., Cifarelli, L., Cintas, D., Citterio, M., Cleveland, B., Cocco, V., Vilda, E. Conde, Consiglio, L., Copello, S., Covone, G., Czubak, M., D’Aniello, M., D’Auria, S., Da Rocha Rolo, M. D., Davini, S., de Candia, A., De Cecco, S., De Gruttola, D., De Filippis, G., Dell’Aquila, D., De Pasquale, S., De Rosa, G., Dellacasa, G., Derbin, A. V., Devoto, A., Capua, F. Di, Noto, L. Di, Dionisi, C., Stefano, P. Di, Dolganov, G., Dordei, F., Elersich, A., Ellingwood, E., Erjavec, T., Diaz, M. Fernandez, Fiorillo, G., Franchini, P., Franco, D., Funicello, N., Gabriele, F., Gahan, D., Galbiati, C., Gallina, G., Gallus, G., Garbini, M., Abia, P. Garcia, Gendotti, A., Ghiano, C., Giganti, C., Giovanetti, G. K., Casanueva, V. Goicoechea, Gola, A., Grauso, G., Cortona, G. Grilli di, Grobov, A., Gromov, M., Guan, M., Guerzoni, M., Gulino, M., Guo, C., Hackett, B. R.

    “…The direct search for dark matter in the form of weakly interacting massive particles (WIMP) is performed by detecting nuclear recoils produced in a target…”
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  6. 6

    Production of GEM-like structures using laser-cutting techniques by Ramos, L. M, Cortez, A. F. V, Kuźniak, M, Gnat, A, Kuźwa, M, Nieradka, G, Sworobowicz, T, Westerdale, S

    Published 13-11-2024
    “…To enhance the ionization yield of liquid argon time projection chambers (LArTPC) used in dark matter and neutrino experiments it was proposed the use of…”
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  7. 7

    Development of wavelength-shifting PEN foils for next generation experiments by Kuźniak, M, Pawłowski, S, Abramowicz, A, Cortez, A. F. V, Kumosiński, M, Łęcki, T, Nieradka, G

    Published 28-03-2024
    “…JINST 19, C05017 (2024) Polyethylene naphthalate (PEN) foils have been demonstrated as a wavelength shifter suitable for operation in liquid argon. At the same…”
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  8. 8

    Cryogenic setup for the characterization of wavelength-shifting materials for noble element radiation detectors by Choudhary, S, Cortez, A. F. V, Kuźniak, M, Nieradka, G, Sworobowicz, T, Świderski, Ł, Szczęśniak, T

    Published 10-01-2024
    “…JINST 19, C05019 (2024) In the present work, we describe a cryogenic setup for studies of wavelength-shifting materials for optimised light collection in noble…”
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  9. 9

    FAT-GEMs: (Field Assisted) Transparent Gaseous-Electroluminescence Multipliers by Leardini, S, Sáa-Hernández, A, Kuźniak, M, González-Díaz, D, Azevedo, C. D. R, Lucas, F, Amedo, P, Cortez, A. F. V, Fernández-Posada, D, Mehl, B, Nieradka, G, de Oliveira, R, Peskov, V, Sworobowicz, T, Williams, S

    Published 28-02-2024
    “…Front. Detect. Sci. Technol 2, 1373235 (2024) The idea of implementing electroluminescence-based amplification through transparent multi-hole structures…”
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  10. 10

    Benchmarking the design of the cryogenics system for the underground argon in DarkSide-20k by Agnes, P, Ahmad, I, Alexander, T, Alton, A. K, Ave, M, Azzolini, O, Olmedo, A. Barrado, Batignani, G, Bonivento, W, Boulay, M. G, Bussino, S, Busto, J, Cadeddu, M, Cadoni, M, Camillo, V, Caminata, A, Caravati, M, Cárdenas-Montes, M, Cargioli, N, Castellani, A, Castello, P, Chashin, S, Chepurnov, A, Cintas, D, Cleveland, B, Coadou, Y, Costa, B. S, Czubak, M, D'Aniello, M, Darbo, G, Dellacasa, G, Derbin, A. V, Mairena, D. Díaz, Ding, X, Dronik, V, Erjavec, T, Ficorella, A, Franchini, P, Franco, D, Gatti, H. Frandini, Galbiati, C, Gallina, G, Abia, P. Garcia, Gawdzik, A, Ghisi, A, Gromov, M, Guerzoni, M, Hackett, B. R, Hungerford, E. V, Ippolito, V, Jamil, A, Kachru, P, Kondo, K, Kuss, M, Lissia, M, Macfadyen, O, McDonald, A. B, Monroe, J, Mroz, T, Nessi, M, Nieradka, G, Nowak, J, Olchanski, K, Oleinik, A, Oleynikov, V, Paternoster, G, Pelczar, K, Piacentini, S. I, Pralavorio, P, Ragusa, F, Ravinthiran, S, Razeti, M, Renshaw, A. L, Retiere, F, Rivetti, A, Roberts, C, Romero, L, Rubbia, A, Rudik, D, Sabia, M, Samoylov, O, Santone, D, Schillaci, G, Semenov, D. A, Sheshukov, A, Smirnova, T, Spadoni, F, Sulis, S, Suvorov, Y, Tedesco, S, Thorpe, T. N, Vallivilayil, T. J, Viant, T, Vossebeld, J, Wada, M, Wang, H, Westerdale, S, Zhang, Y, Zuzel, G, Zykova, M. P

    Published 26-08-2024
    “…DarkSide-20k (DS-20k) is a dark matter detection experiment under construction at the Laboratori Nazionali del Gran Sasso (LNGS) in Italy. It utilises ~100 t…”
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    Journal Article
  11. 11

    DarkSide-20k sensitivity to light dark matter particles by Agnes, P, Ahmad, I, Alexander, T, Alton, A. K, Ave, M, Azzolini, O, Batignani, G, Bonivento, W, Boulay, M. G, Bussino, S, Busto, J, Cadeddu, M, Cadoni, M, Camillo, V, Caminata, A, Caravati, M, Cárdenas-Montes, M, Cargioli, N, Castellani, A, Castello, P, Chashin, S, Chepurnov, A, Cintas, D, Cleveland, B, Coadou, Y, Costa, B. S, Czubak, M, D'Aniello, M, Darbo, G, Dellacasa, G, Derbin, A. V, Mairena, D. Díaz, Ding, X, Dronik, V, Erjavec, T, Ficorella, A, Franchini, P, Franco, D, Gatti, H. Frandini, Galbiati, C, Gallina, G, Abia, P. Garcia, Gawdzik, A, Ghisi, A, Gromov, M, Guerzoni, M, Hackett, B. R, Hungerford, E. V, Ippolito, V, Jamil, A, Kachru, P, Kotsiopoulou, L, Leason, E, Lidey, L, Lissia, M, Luzzi, L, Macfadyen, O, Mariani, C, Martinez, M, Mavrokoridis, K, Mclaughlin, J, Merzi, S, Messina, A, Moioli, S, Moretti, E, Musico, P, Nessi, M, Nikolopoulos, K, de Solórzano, A. Ortiz, Pallavicini, M, Pantic, E, Papi, D, Pegoraro, P. A, Pelczar, K, Pesudo, V, Poehlmann, M, Pralavorio, P, Price, D, Puglia, S, Bazetto, M. Queiroga, Ramachers, Y, Rignanese, L. P, Rivetti, A, Santos, E. M, SchuckmanII, F. G, Skensved, P, Spangenberg, M, Stefanizzi, R, Steri, A, Sunny, C, Szelc, A. M, Tartaglia, R, Testera, G, Tricomi, A, Velazquez-Fernandez, L, Vishneva, A, Vogelaar, R. B, Yin, J, Zhang, Y, Zichichi, A

    Published 08-07-2024
    “…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…”
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    Journal Article
  12. 12

    SiPM cross-talk in liquid argon detectors by Boulay, M. G, Camillo, V, Canci, N, Choudhary, S, Consiglio, L, Flammini, A, Galbiati, C, Ghiano, C, Gola, A, Horikawa, S, Kachru, P, Kochanek, I, Kondo, K, Korga, G, Kuźniak, M, Mazzi, A, Moharana, A, Nieradka, G, Paternoster, G, Razeto, A, Sablone, D, Thorpe, T. N, Türkoğlu, C, Wang, H, Rescigno, M, Sanfilippo, S

    Published 06-07-2022
    “…Front. Phys. 11, 1181400 (2023) SiPM-based readouts are becoming the standard for light detection in particle detectors given their superior resolution and…”
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  13. 13

    A new hybrid gadolinium nanoparticles-loaded polymeric material for neutron detection in rare event searches by Agnes, P, Ahmad, I, Albuquerque, I. F, Alexander, T, Alton, A. K, Ave, M, Azzolini, O, Olmedo, A. Barrado, Batignani, G, Bonivento, W, Bottino, B, Boulay, M. G, Bussino, S, Caminata, A, Cárdenas-Montes, M, Cargioli, N, Carlini, M, Castello, P, Chashin, S, Chepurnov, A, Cintas, D, Cleveland, B, Coadou, Y, Consiglio, L, Costa, B. S, Czubak, M, Darbo, G, De Cecco, S, Dellacasa, G, Derbin, A. V, Dolganov, G, Franchini, P, Gatti, H. Frandini, Gallina, G, Garbini, M, Abia, P. Garcia, Gendotti, A, Giovanetti, G. K, Casanueva, V. Goicoechea, di Cortona, G. Grilli, Hamer, A, Haranczyk, M, Hugues, T, Ianni, A, Jillings, C, Kemmerich, N, Kendziora, C. L, Kuss, M, Lissia, M, Luzzi, L, Macfadyen, O, Mariani, C, Matteucci, G, Minutoli, S, Monroe, J, Muratova, V. N, Nowak, J, Olchanski, K, Oleinik, A, Oleynikov, V, Organtini, P, Piacentini, S. I, Plante, G, Pocar, A, Ramirez, A, Ravinthiran, S, Razeti, M, Renshaw, A. L, Roberts, A, Roberts, C, Rogers, G, Romero, L, Sadashivajois, S, Salomone, P, Santone, D, Santorelli, R, Scioli, G, Skorokhvatov, M. D, Sotnikov, A, Stornelli, V, Stracka, S, Sulis, S, Sung, A, Sunny, C, Taborda, O, Taylor, A, Taylor, J, Tedesco, S, Thieme, K, Thompson, A, Tonazzo, A, Tosi, S, Vishneva, A, Vogelaar, R. B, Wojaczynski, R, Wojcik, M, Yin, J, Zabihi, A, Zichichi, A, Zuzel, G

    Published 29-04-2024
    “…JINST 19 P09021 (2024) Experiments aimed at direct searches for WIMP dark matter require highly effective reduction of backgrounds and control of any residual…”
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    Journal Article
  14. 14

    Development of very-thick transparent GEMs with wavelength-shifting capability for noble element TPCs by Kuźniak, M, González-Díaz, D, Amedo, P, Azevedo, C. D. R, Fernández-Posada, D. J, Kuźwa, M, Leardini, S, Leonhardt, A, Łęcki, T, Manzanillas, L, Muenstermann, D, Nieradka, G, de Oliveira, R, Pollmann, T. R, Hernández, A. Saá, Sworobowicz, T, Türkoğlu, C, Williams, S

    Published 15-03-2022
    “…Eur. Phys. J. C 81, 609 (2021) A new concept for the simultaneous detection of primary and secondary scintillation in time projection chambers is proposed. Its…”
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    Journal Article
  15. 15

    Direct comparison of PEN and TPB wavelength shifters in a liquid argon detector by Boulay, M. G, Camillo, V, Canci, N, Choudhary, S, Consiglio, L, Flammini, A, Galbiati, C, Ghiano, C, Gola, A, Horikawa, S, Kachru, P, Kochanek, I, Kondo, K, Korga, G, Kuźniak, M, Kuźwa, M, Leonhardt, A, Łęcki, T, Mazzi, A, Moharana, A, Nieradka, G, Paternoster, G, Pollmann, T. R, Razeto, A, Sablone, D, Sworobowicz, T, Szelc, A. M, Türkoğlu, C, Wang, H

    Published 15-03-2022
    “…Eur. Phys. J. C 81, 1099 (2021) A large number of particle detectors employ liquid argon as their target material owing to its high scintillation yield and its…”
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  16. 16

    Directionality of nuclear recoils in a liquid argon time projection chamber by Collaboration, The DarkSide-20k, Ahmad, I, Albuquerque, I. F. M, Ave, M, Avetisov, I. Ch, Batignani, G, Bonivento, W. M, Bottino, B, Boulay, M. G, Caravati, M, Castello, P, Ruiz, J. M. Cela, Citterio, M, Cocco, V, Copello, S, Covone, G, Czubak, M, D'Auria, S, Rolo, M. D. Da Rocha, de Candia, A, De Filippis, G, Dell'Aquila, D, De Rosa, G, Dellacasa, G, Derbin, A. V, Dionisi, C, Dordei, F, Elersich, A, Erjavec, T, Franchini, P, Franco, D, Funicello, N, Gahan, D, Gallus, G, Garbini, M, Casanueva, V. Goicoechea, di Cortona, G. Grilli, Gromov, M, Guan, M, Guerzoni, M, Guo, C, Hallin, A. L, Hamer, A, Haranczyk, M, Hill, S, Kemmerich, N, Kochanek, I, Koulosousas, S, La Commara, M, Leoni, A, Lychagina, O, Manecki, S, Marini, A, Matteucci, G, Milincic, R, Muratova, V. N, Nania, R, Nikolopoulos, K, Olchansky, K, Oleynikov, V, Organtini, P, de Solórzano, A. Ortiz, Pagani, L, Pallavicini, M, Pandola, L, Paternoster, G, Pelczar, K, Pino, N, Pocar, A, Pordes, S, Ramachers, Y, Rescigno, M, Rignanese, L. P, Rivetti, A, Roberts, C, Romero, L, Rossi, M, Sandford, E, Sanfilippo, S, Santorelli, R, Savarese, C, SchuckmanII, F. G, Scioli, G, Skorokhvatov, M. D, Smith, B, Stringer, M, Sulis, S, Sung, A, Szelc, A. M, Taylor, A, John, T. Vallivilayil, Viant, T, Vossebeld, J, Wang, H, Wright, T, Xie, Y, Yang, C, Zabihi, A, Zichichi, A, Zykova, M. P

    Published 28-07-2023
    “…Eur. Phys. J. C 84:24 (2024) The direct search for dark matter in the form of weakly interacting massive particles (WIMP) is performed by detecting nuclear…”
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  17. 17

    Sensitivity projections for a dual-phase argon TPC optimized for light dark matter searches through the ionization channel by Alexander, T, Alton, A. K, Ave, M, Barbarian, V, Olmedo, A. Barrado, Barrillon, P, Basco, A, Bondar, A, Bonivento, W. M, Caminata, A, Cifarelli, L, Cocco, V, Copello, S, Cross, S, D'Auria, S, Rolo, M. D. Da Rocha, Dadoun, O, De Cecco, S, De Falco, A, De Gruttola, D, De Pasquale, S, Dolganov, G, Diaz, M. Fernandez, Franceschi, A, Frolov, E, Gahan, D, Gendotti, A, Giampaolo, R. A, Giganti, C, Giovanetti, G. K, Casanueva, V. Goicoechea, Diaz, R. Graciani, di Cortona, G. Grilli, Guan, M, Guerzoni, M, Hackett, B. R, Hill, S, Horikawa, S, Hungerford, E. V, Jillings, C, Kemp, A. A, Kendziora, C. L, Khomyakov, A. V, Kimura, M, Korga, G, Kubankin, A, Kuss, M, Kuźniak, M, Li, X, Lipp, J, Lissia, M, Mariani, C, Martínez, M, Masoni, A, Mazzi, A, Moggi, A, Morrocchi, M, Mozhevitina, E. N, Mróz, T, Musico, P, Napolitano, T, Nikolopoulos, K, Olchansky, K, Pandola, L, Paoloni, E, Paternoster, G, Pelczar, K, Pesudo, V, Piacentini, S, Pocar, A, Pordes, S, Ramachers, Y, Razeti, M, Renshaw, A. L, Retiere, F, Ripoli, C, Roberts, A, Sadashivajois, S, Santone, D, Santorelli, R, Savarese, C, Simeone, M, Skensved, P, Stefanizzi, R, Stringer, M, Türkoğ, C, Tartaglia, R, Taylor, A, Taylor, J, Torres-Lara, S, Tricomi, A, Vogelaar, R. B, Vossebeld, J, Walczak, M. B, Wang, Y, Westerdale, S, Wheadon, R. J, Xie, Y, Yang, C, Zuzel, G

    Published 20-06-2023
    “…Phys. Rev. D 107, 112006 (2023) Dark matter lighter than 10 GeV/c$^2$ encompasses a promising range of candidates. A conceptual design for a new detector,…”
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