Accès ouvert déclaré
2023
conference-paper
Wavelength-shifting light traps for SWGO and other applications
Marine Pihet, P. Abreu, A. Albert, Ruben Jose Alfaro, Alexander Alfonso, César Álvarez, Qi An, E. O. Angüner, Cornelia Arcaro, R. Arceo, Sandro Arias, Horacio Arnaldi, P. Assis, H. A. Ayala Solares, Alena Bakalová, U. Barres de Almeida, Ivana Batković, J. Bazo, Jose A. Bellido, E. Belmont, S. BenZvi, Abel Bernal, Wenyi Bian, C. Bigongiari, E. Bottacini, P. Brogueira, T. Bulik, G. Busetto, K. S. Caballero‐Mora, P. Camarri, Silvina Campos, Wenyu Cao, Zhe Cao, Zhen Cao, T. Capistrán, M. Cardillo, E. Carquín, A. Carramiñana, C. Castromonte, J. F. Chang, Oscar Chaparro, Shangming Chen, Marco Chianese, A. Chiavassa, Ladislav Chytka, Roberta Colallillo, R. Conceição, Giovanni Consolati, Raúl R. Cordero, Pedro J. Costa, J. Cotzomi, S. Dasso, A. De Angelis, P. Desiati, F. Di Pierro, G. Di Sciascio, Claudio Dib, B. L. Dingus, Julia Isabel Djuvsland, C. Dobrigkeit, Luis Miguel Domingues Mendes, T. Dorigo, M. Doro, A. C. dos Reis, Michael Du Vernois, Mauricio Echiburu, D. Elsäesser, K. Engel, T. Ergin, Francisco Espinoza, Ke Fang, Fernando Farfán Carreras, A. Fazzi, C. Feng, M. Feroci, N. Fraija, S. Fraija, A. Franceschini, S. Funk, Sayri Garcia, J. A. García-González, F. Garfias, Gwenael Giacinti, Lucio Gibilisco, Jonas Glombitza, Hazal Goksu, G. Gong, B. S. González, Magda Gonzalez, J. A. Goodman, Minhao Gu, F. Guarino, Shivangi Gupta, Fabian Haist, Hayk Hakobyan, Han Guangchao, Patricia María Hansen, J. Patrick Harding, Juan Carlos Helo, Ian Herzog, Hugo d. Hidalgo, J. A. Hinton, Kun Hu, Dezhi Huang, Petra Huentemeyer, F. Hueyotl‐Zahuantitla, A. Iriarte, Jasmina Isaković, Antonio Isolia, Vikas Joshi, Jakub Jurýšek, S Kaci, Fabio La Monaca, G. La Mura, Rodrigo Guedes Lang, Roxana Laspiur, Luigi Lavitola, J. S. H. Lee, Franziska Leitl, Luigi Lessio, Cong Li, Jian Li, K. Li, Tianyang Li, B. Liberti, Sujie Lin, Liu Dong, Jia Liu, Ruoyu Liu, F. Longo, Yu Luo, Jing Lv, Elena Macerata, K. Malone, Dušan Mandát, M. Manganaro, Mario Mariani, Analisa Mariazzi, M. Mariotti, Teresa Marrodan, Jesús Arjona Martínez, H. Martínez-Huerta, S. Medina, Diego Melo, Filipe Mendes, Erick Meza, Davide Miceli, S. Miozzi, Alison Mitchell, Andrea Molinario, Oscar G. Morales-Olivares, E. Moreno, A. Morselli, Eros Mossini, M. Mostafá, Fabio Muleri, F. Nardi, Arsenio Negro, L. Nellen, Vladimír Novotný, Mabel Osorio, Luis Otiniano, M. Peresano, G. Piano, A. Pichel, M. Pimenta, E. Prandini, Jiajun Qin, Erick Quispe, S. Rainò, E. Rangel, Andreas Reisenegger, Helena X. Ren, Filip Rescic, Brian Reville, Chang Dong Rho, Mario Riquelme, Gonzalo Rodriguez Fernandez, Youn Roh, Gustavo E. Romero, B. Rossi, Adrián Rovero, E. Ruiz-Velasco, Germán Ariel Salazar, Jorge Samanes, Federico Andrés Sánchez, A. Sandoval, M. Santander, Rinaldo Santonico, Gizele Lian P. Santos, Ninetta Saviano, M. Schneider, M. Schneider, Harm Schoorlemmer, José Erandi Serna-Franco, Victor Serrano, Andrew Smith, Y. Son, Orlando Javier Soto Sandoval, Wayne Robert Springer, Luiz Augusto Stuani, Hao Sun, Ruiyi Tang, Z. Tang, M. Tavani, T. Terzić, Kirsten Tollefson, B. Tomé, Ibrahim Daniel Torres, Ramiro Torres-Escobedo, Gian Carlo Trinchero, Rhiannon M. Turner, Laura Valore, C. van Eldik, Indira Vergara, A. Viana, J. Vícha, C. Vigorito, V. Vittorini, Bo Wang, J. S. Wang, Lingyu Wang, Xiaojie Wang, Xiangyu Wang, Xinsheng Wang, Zhen Wang, Muhammad Mohsin Waqas, I. J. Watson, Felix Werner, R. White, C. H. Wiebusch, E. Willox, Frederik Wohlleben, Sha Wu, Shaoqiang Xi, Gang Xiao, Lili Yang, Ruizhi Yang, Raul Yanyachi, Z. G. Yao, Danilo Zavrtanik, Hongfei Zhang, Hai-Ming Zhang, Shaoru Zhang, Xiaopeng Zhang, Yuanping Zhang, Jing Zhao, Lei Zhao, Zhou Zhou, C. G. Zhu, Pengzhe Zhu, Xiong Zuo
1Citations signalées, ce qui n’est pas une note de qualité
2Institutions déclarées
1Pays d’affiliation déclarés
Rattachement africain : it.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Wavelength-shifting (WLS) materials contain molecules that absorb light and reemit at longer wavelengths. They can be used for light detection because they provide a large effective area for low cost and they are able to efficiently trap and guide light because of total internal reflection processes. We are currently developing such a WLS detector, considering two main designs: A single-shift design with one wavelength shift (tile) and a double-shift design with two wavelength shifts (tile and fiber). As photodetectors we use small Silicon photomultipliers (SiPMs) with a high photon detection efficiency (PDE) and single-photon sensitivity. The double-shift layout goes at the expense of detection efficiency. In this design however, light is channeled to the two ends of a fiber, thus requiring a reduced photosensitive area compared to the single-shift layout. We will present the results of our measurements and show that light traps and SiPMs together represent a promising alternative to PMTs in case of a non-focused light beam. For the special case of SWGO, the application of light traps is also motivated by a possible improvement of the gamma/hadron separation, using a one-chamber tank with an array of wavelength-shifting light traps instead of a (two-chamber) tank with PMTs. Besides SWGO, new WLS detectors could also constitute useful and cheap technology for other experiments and use cases. The contribution summarizes our motivation and efforts to build a light trap detection module and to characterize its properties in terms of costs, temporal performance and detection efficiency.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- Wavelength-shifting light traps for SWGO and other applications
- Date Crossref
- 17/08/2023
- Éditeur
- SISSA Medialab
- Type
- proceedings-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Radiation Detection and Scintillator TechnologiesAtmospheric Ozone and ClimateBiosensors and Analytical Detection