Zobrazeno 1 - 10
of 30
pro vyhledávání: '"Cryogenic calorimeters"'
Akademický článek
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Autor:
O. Azzolini, J.W. Beeman, F. Bellini, M. Beretta, M. Biassoni, C. Brofferio, C. Bucci, S. Capelli, L. Cardani, P. Carniti, V. Caracciolo, N. Casali, D. Chiesa, M. Clemenza, I. Colantoni, O. Cremonesi, A. Cruciani, I. Dafinei, A. D'Addabbo, S. Di Domizio, F. Ferroni, L. Gironi, A. Giuliani, P. Gorla, C. Gotti, G. Keppel, M. Martinez, S. Nagorny, M. Nastasi, S. Nisi, C. Nones, D. Orlandi, L. Pagnanini, M. Pallavicini, L. Pattavina, M. Pavan, G. Pessina, V. Pettinacci, S. Pirro, S. Pozzi, E. Previtali, A. Puiu, C. Rusconi, K. Schäffner, C. Tomei, M. Vignati, A. Zolotarova
Publikováno v:
Physics Letters B, Vol 822, Iss , Pp 136642- (2021)
Rare event physics demands very detailed background control, high-performance detectors, and custom analysis strategies. Cryogenic calorimeters combine all these ingredients very effectively, representing a promising tool for next-generation experime
Externí odkaz:
https://doaj.org/article/2e1e7a21149f4ff382ad570a29d9ebab
Autor:
Fantini, G, Armatol, A, Armengaud, E, Armstrong, W, Augier, C, Avignone, FT, Azzolini, O, Barabash, A, Bari, G, Barresi, A, Baudin, D, Bellini, F, Benato, G, Beretta, M, Bergé, L, Biassoni, M, Billard, J, Boldrini, V, Branca, A, Brofferio, C, Bucci, C, Camilleri, J, Capelli, S, Cappelli, L, Cardani, L, Carniti, P, Casali, N, Cazes, A, Celi, E, Chang, C, Chapellier, M, Charrier, A, Chiesa, D, Clemenza, M, Colantoni, I, Collamati, F, Copello, S, Cova, F, Cremonesi, O, Creswick, RJ, Cruciani, A, D’Addabbo, A, D’Imperio, G, Dafinei, I, Danevich, FA, de Combarieu, M, De Jesus, M, de Marcillac, P, Dell’Oro, S, Domizio, S Di, Dompè, V, Drobizhev, A, Dumoulin, L, Fasoli, M, Faverzani, M, Ferri, E, Ferri, F, Ferroni, F, Figueroa-Feliciano, E, Formaggio, J, Franceschi, A, Fu, C, Fu, S, Fujikawa, BK, Gascon, J, Giachero, A, Gironi, L, Giuliani, A, Gorla, P, Gotti, C, Gras, P, Gros, M, Gutierrez, TD, Han, K, Hansen, EV, Heeger, KM, Helis, DL, Huang, HZ, Huang, RG, Imbert, L, Johnston, J, Juillard, A, Karapetrov, G, Keppel, G, Khalife, H, Kobychev, VV, Kolomensky, Yu G, Konovalov, S, Liu, Y, Loaiza, P, Ma, L, Madhukuttan, M, Mancarella, F, Mariam, R, Marini, L, Marnieros, S, Martinez, M, Maruyama, RH, Mauri, B, Mayer, D
Publikováno v:
Journal of Low Temperature Physics, vol 209, iss 5-6
CUORE Upgrade with Particle IDentification (CUPID) is a foreseen ton-scale array of Li2MoO4 (LMO) cryogenic calorimeters with double readout of heat and light signals. Its scientific goal is to fully explore the inverted hierarchy of neutrino masses
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=od_______325::3afa6d10057196e086d215c388d51abc
https://escholarship.org/uc/item/7sr999w8
https://escholarship.org/uc/item/7sr999w8
Autor:
Fabio Bellini, Oscar Azzolini, Maria Teresa Barrera, Jeffrey Beeman, Mattia Beretta, Matteo Biassoni, Chiara Brofferio, Carlo Bucci, Lucia Canonica, Silvia Capelli, Laura Cardani, Paolo Carniti, Nicola Casali, Lorenzo Cassina, Massimiliano Clemenza, Oliverio Cremonesi, Angelo Cruciani, Antonio D’Addabbo, Ioan Dafinei, Sergio Di Domizio, Fernando Ferroni, Luca Gironi, Andrea Giuliani, Paolo Gorla, Claudio Gotti, Giorgio Keppel, Maria Martinez, Silvio Morganti, Sergei Nagorny, Massimiliano Nastasi, Stefano Nisi, Claudia Nones, Donato Orlandi, Lorenzo Pagnanini, Marco Pallavicini, Vincenzo Palmieri, Luca Pattavina, Maura Pavan, Gianluigi Pessina, Valerio Pettinacci, Stefano Pirro, Stefano Pozzi, Ezio Previtali, Andrei Puiu, Claudia Rusconi, Karoline Schäffner, Claudia Tomei, Marco Vignati, Anastasia Zolotarova
Publikováno v:
Universe, Vol 5, Iss 1, p 2 (2018)
CUPID-0 is the first large array of scintillating Zn 82 Se cryogenic calorimeters (bolometers) implementing particle identification for the search of the neutrinoless double beta decay (0 ν β β ). The detector consists of 24 enriched Zn 82 Se bolo
Externí odkaz:
https://doaj.org/article/4d05fe0283084da6bd5e09caa3f4afa0
Akademický článek
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Autor:
Guido Fantini, O. Azzolini, J.W. Beeman, F. Bellini, M. Beretta, M. Biassoni, C. Brofferio, C. Bucci, S. Capelli, V. Caracciolo, L. Cardani, P. Carniti, N. Casali, E. Celi, D. Chiesa, M. Clemenza, I. Colantoni, O. Cremonesi, A. Cruciani, A. D’Addabbo, I. Dafinei, S. DiDomizio, V. Dompè, F. Ferroni, L. Gironi, A. Giuliani, P. Gorla, C. Gotti, G. Keppel, J. Kotila, M. Martinez, S. Nagorny, M. Nastasi, S. Nisi, C. Nones, D. Orlandi, L. Pagnanini, M. Pallavicini, L. Pattavina, M. Pavan, G. Pessina, V. Pettinacci, S. Pirro, S. Pozzi, E. Previtali, A. Puiu, A. Ressa, C. Rusconi, K. Schäffner, C. Tomei, M. Vignati, A.S. Zolotarova
Publikováno v:
PoS
41st International Conference on High Energy Physics
41st International Conference on High Energy Physics, Jul 2022, Bologna, Italy. pp.599, ⟨10.22323/1.414.0599⟩
41st International Conference on High Energy Physics
41st International Conference on High Energy Physics, Jul 2022, Bologna, Italy. pp.599, ⟨10.22323/1.414.0599⟩
International audience; CUPID-0 is a pilot experiment in scintillating cryogenic calorimetry for the search of neutrino-less double beta decay. 26 ZnSe crystals were operated continuously in the first project phase (March 2017 - December 2018), demon
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::80b5c6e38b84806bd414964b0e106e65
http://urn.fi/URN:NBN:fi:jyu-202303142144
http://urn.fi/URN:NBN:fi:jyu-202303142144
Autor:
G. Fantini, A. Armatol, E. Armengaud, W. Armstrong, C. Augier, F. T. Avignone, O. Azzolini, A. Barabash, G. Bari, A. Barresi, D. Baudin, F. Bellini, G. Benato, M. Beretta, L. Bergé, M. Biassoni, J. Billard, V. Boldrini, A. Branca, C. Brofferio, C. Bucci, J. Camilleri, S. Capelli, L. Cappelli, L. Cardani, P. Carniti, N. Casali, A. Cazes, E. Celi, C. Chang, M. Chapellier, A. Charrier, D. Chiesa, M. Clemenza, I. Colantoni, F. Collamati, S. Copello, F. Cova, O. Cremonesi, R. J. Creswick, A. Cruciani, A. D’Addabbo, G. D’Imperio, I. Dafinei, F. A. Danevich, M. de Combarieu, M. De Jesus, P. de Marcillac, S. Dell’Oro, S. Di Domizio, V. Dompè, A. Drobizhev, L. Dumoulin, M. Fasoli, M. Faverzani, E. Ferri, F. Ferri, F. Ferroni, E. Figueroa-Feliciano, J. Formaggio, A. Franceschi, C. Fu, S. Fu, B. K. Fujikawa, J. Gascon, A. Giachero, L. Gironi, A. Giuliani, P. Gorla, C. Gotti, P. Gras, M. Gros, T. D. Gutierrez, K. Han, E. V. Hansen, K. M. Heeger, D. L. Helis, H. Z. Huang, R. G. Huang, L. Imbert, J. Johnston, A. Juillard, G. Karapetrov, G. Keppel, H. Khalife, V. V. Kobychev, Yu. G. Kolomensky, S. Konovalov, Y. Liu, P. Loaiza, L. Ma, M. Madhukuttan, F. Mancarella, R. Mariam, L. Marini, S. Marnieros, M. Martinez, R. H. Maruyama, B. Mauri, D. Mayer, Y. Mei, S. Milana, D. Misiak, T. Napolitano, M. Nastasi, X. F. Navick, J. Nikkel, R. Nipoti, S. Nisi, C. Nones, E. B. Norman, V. Novosad, I. Nutini, T. O’Donnell, E. Olivieri, C. Oriol, J. L. Ouellet, S. Pagan, C. Pagliarone, L. Pagnanini, P. Pari, L. Pattavina, B. Paul, M. Pavan, H. Peng, G. Pessina, V. Pettinacci, C. Pira, S. Pirro, D. V. Poda, T. Polakovic, O. G. Polischuk, S. Pozzi, E. Previtali, A. Puiu, A. Ressa, R. Rizzoli, C. Rosenfeld, C. Rusconi, V. Sanglard, J. Scarpaci, B. Schmidt, V. Sharma, V. Shlegel, V. Singh, M. Sisti, D. Speller, P. T. Surukuchi, L. Taffarello, O. Tellier, C. Tomei, V. I. Tretyak, A. Tsymbaliuk, A. Vedda, M. Velazquez, K. J. Vetter, S. L. Wagaarachchi, G. Wang, L. Wang, B. Welliver, J. Wilson, K. Wilson, L. A. Winslow, M. Xue, L. Yan, J. Yang, V. Yefremenko, V. Yumatov, M. M. Zarytskyy, J. Zhang, A. Zolotarova, S. Zucchelli
Publikováno v:
J.Low Temp.Phys.
J.Low Temp.Phys., 2022, 209 (5-6), pp.1024-1031. ⟨10.1007/s10909-022-02741-9⟩
J.Low Temp.Phys., 2022, 209 (5-6), pp.1024-1031. ⟨10.1007/s10909-022-02741-9⟩
CUORE Upgrade with Particle IDentification (CUPID) is a foreseen ton-scale array of Li2MoO4 (LMO) cryogenic calorimeters with double readout of heat and light signals. Its scientific goal is to fully explore the inverted hierarchy of neutrino masses
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bd81eedaef99afd84b8cedd605c6ec14
https://hdl.handle.net/11585/899790
https://hdl.handle.net/11585/899790
Autor:
S. Di Domizio, Laura Cardani, Stefano Pozzi, A. Giuliani, Davide Chiesa, M. Vignati, Jeffrey W. Beeman, L. Pattavina, Massimiliano Clemenza, Simone Capelli, M. Pavan, A. D'Addabbo, M. Beretta, C. Brofferio, C. Rusconi, K. Schäffner, D. Orlandi, G. Keppel, V. Caracciolo, Stefano Nisi, F. Bellini, Paolo Carniti, P. Gorla, F. Ferroni, C. Tomei, V. Pettinacci, Massimiliano Nastasi, I. Colantoni, L. Pagnanini, S. S. Nagorny, Marco Pallavicini, G. Pessina, S. Pirro, C. Nones, A. Puiu, O. Azzolini, Angelo Cruciani, I. Dafinei, Ezio Previtali, Oliviero Cremonesi, Claudio Gotti, N. Casali, M. Biassoni, C. Bucci, Miriam Lucio Martinez, L. Gironi, A. S. Zolotarova
Publikováno v:
Physics Letters B, Vol 822, Iss, Pp 136642-(2021)
Phys.Lett.B
Phys.Lett.B, 2021, 822, pp.136642. ⟨10.1016/j.physletb.2021.136642⟩
Phys.Lett.B
Phys.Lett.B, 2021, 822, pp.136642. ⟨10.1016/j.physletb.2021.136642⟩
Rare event physics demands very detailed background control, high-performance detectors, and custom analysis strategies. Cryogenic calorimeters combine all these ingredients very effectively, representing a promising tool for next-generation experime
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::cbd3f659e6010d14f5a8d22cc9865b3b
http://arxiv.org/abs/2105.03329
http://arxiv.org/abs/2105.03329
Akademický článek
Tento výsledek nelze pro nepřihlášené uživatele zobrazit.
K zobrazení výsledku je třeba se přihlásit.
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Autor:
E. Armengaud, C. Augier, A. S. Barabash, F. Bellini, G. Benato, A. Benoît, M. Beretta, L. Bergé, J. Billard, Yu. A. Borovlev, Ch. Bourgeois, M. Briere, V. B. Brudanin, P. Camus, L. Cardani, N. Casali, A. Cazes, M. Chapellier, F. Charlieux, M. de Combarieu, I. Dafinei, F. A. Danevich, M. De Jesus, L. Dumoulin, K. Eitel, E. Elkhoury, F. Ferri, B. K. Fujikawa, J. Gascon, L. Gironi, A. Giuliani, V. D. Grigorieva, M. Gros, E. Guerard, D. L. Helis, H. Z. Huang, R. Huang, J. Johnston, A. Juillard, H. Khalife, M. Kleifges, V. V. Kobychev, Yu. G. Kolomensky, S. I. Konovalov, A. Leder, P. Loaiza, L. Ma, E. P. Makarov, P. de Marcillac, L. Marini, S. Marnieros, D. Misiak, X. -F. Navick, C. Nones, V. Novati, E. Olivieri, J. L. Ouellet, L. Pagnanini, P. Pari, L. Pattavina, B. Paul, M. Pavan, H. Peng, G. Pessina, S. Pirro, D. V. Poda, O. G. Polischuk, E. Previtali, Th. Redon, S. Rozov, C. Rusconi, V. Sanglard, K. Schäffner, B. Schmidt, Y. Shen, V. N. Shlegel, B. Siebenborn, V. Singh, S. Sorbino, C. Tomei, V. I. Tretyak, V. I. Umatov, L. Vagneron, M. Velázquez, M. Weber, B. Welliver, L. Winslow, M. Xue, E. Yakushev, A. S. Zolotarova
Publikováno v:
Eur.Phys.J.C
Eur.Phys.J.C, 2020, 80 (1), pp.44. ⟨10.1140/epjc/s10052-019-7578-6⟩
European Physical Journal C, vol 80, iss 1
European Physical Journal C: Particles and Fields
European Physical Journal C: Particles and Fields, 2020, 80 (1), pp.44. ⟨10.1140/epjc/s10052-019-7578-6⟩
The European physical journal / C, 80 (1), Article: 44
European Physical Journal
European Physical Journal C: Particles and Fields, Vol 80, Iss 1, Pp 1-15 (2020)
Eur.Phys.J.C, 2020, 80 (1), pp.44. ⟨10.1140/epjc/s10052-019-7578-6⟩
European Physical Journal C, vol 80, iss 1
European Physical Journal C: Particles and Fields
European Physical Journal C: Particles and Fields, 2020, 80 (1), pp.44. ⟨10.1140/epjc/s10052-019-7578-6⟩
The European physical journal / C, 80 (1), Article: 44
European Physical Journal
European Physical Journal C: Particles and Fields, Vol 80, Iss 1, Pp 1-15 (2020)
CUPID-Mo is a bolometric experiment to search for neutrinoless double-beta decay ($0\nu\beta\beta$) of $^{100}$Mo. In this article, we detail the CUPID-Mo detector concept, assembly, installation in the underground laboratory in Modane in 2018, and p
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::56c896fe5ad5026d3636cb1e61543082
https://hal.archives-ouvertes.fr/hal-02317281
https://hal.archives-ouvertes.fr/hal-02317281