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Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays

We report the results of the analyses of the cosmic ray data collected with a 4 tonne (3×1×1 m3) active mass (volume) Liquid Argon Time-Projection Chamber (TPC) operated in a dual-phase mode. We present a detailed study of the TPC's response, its main detector parameters and performance. The re...

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Detalles Bibliográficos
Autores principales: Aimard, B., Aizawa, L., Alt, C., Asaadi, J., Auger, M., Aushev, V., Autiero, D., Balaceanu, A., Balik, G., Balleyguier, L., Bechetoille, E., Belver, D., Blebea-Apostu, A.M., Bolognesi, S., Bordoni, S., Bourgeois, N., Bourguille, B., Bremer, J., Brown, G., Brunetti, L., Brunetti, G., Caiulo, D., Calin, M., Calvo, E., Campanelli, M., Cankocak, K., Cantini, C., Carlus, B., Cautisanu, B.M., Chalifour, M., Chappuis, A., Charitonidis, N., Chatterjee, A., Chiriacescuf, A., Chiu, P., Coan, T., Conforti, S., Cotte, P., Crivelli, P., Cuesta, C., Dawson, J., De Bonis, I., De La Taille, C., Delbart, A., Di Luise, S., Doizon, F., Drancourt, C., Duchesneau, D., Dulucq, F., Duval, F., Emery, S., Ereditato, A., Falcone, A., Fusshoeller, K., Gallego-Ros, A., Galymov, V., Geffroy, N., Gendotti, A., Gherghel-Lascu, A., Gil-Botella, I., Girerd, C., Gomoiu, M.C., Gorodetzky, P., Hamada, E., Hanni, R., Hasegawa, T., Holin, A., Horikawa, S., Ikeno, M., Jiménez, S., Jipa, A., Karolak, M., Karyotakis, Y., Kasai, S., Kasami, K., Kishishita, T., Konari, H., Kreslo, I., Kryn, D., Kunzé, P., Kurokawa, M., Kuromori, Y., Lastoria, C., Lazanu, I., Lehmann-Miotto, G., Leyton, M., Lira, N., Liubarska, M., Loo, K., Lorca, D., Lutz, P., Lux, T., Maalampi, J., Maire, G., Maki, M., Manenti, L., Margineanu, R.M., Marteau, J., Martin-Chassard, G., Mathez, H., Mazzucato, E., Misitano, G., Mladenov, D., Bueno, L. Molina, Mosu, T.S., Mu, W., Murphy, S., Nakayoshi, K., Narita, S., Navas-Nicolás, D., Negishi, K., Nessi, M., Niculescu-Oglinzanu, M., Noto, F., Noury, A., Onishchuk, Y., Palomares, C., Parvu, M., Patzak, T., Penichot, Y., Pennacchio, E., Periale, L., Pessard, H., Pietropaolo, F., Pugnere, D., Radics, B., Redondo, D., Regenfus, C., Remoto, A., Resnati, F., Ristea, O., Rubbia, A., Saftoiu, A., Sakashita, K., Sanchez, F., Santos, C., Scarpelli, A., Schloesser, C., Sendai, K., Sergiampietri, F., Shahsavarani, S., Shoji, M., Sinclair, J., Soto-Oton, J., Stanca, D.I., Stefan, D., Sulej, R., Tanaka, M., Toboaru, V., Tonazzo, A., Tromeur, W., Trzaska, W.H., Uchida, T., Urda, L., Vannucci, F., Vasseur, G., Verdugo, A., Viant, T., Vihonen, S., Vilalte, S., Weber, M., Wu, S., Yu, J., Zambelli, L., Zito, M.
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/16/08/P08063
http://cds.cern.ch/record/2765254
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author Aimard, B.
Aizawa, L.
Alt, C.
Asaadi, J.
Auger, M.
Aushev, V.
Autiero, D.
Balaceanu, A.
Balik, G.
Balleyguier, L.
Bechetoille, E.
Belver, D.
Blebea-Apostu, A.M.
Bolognesi, S.
Bordoni, S.
Bourgeois, N.
Bourguille, B.
Bremer, J.
Brown, G.
Brunetti, L.
Brunetti, G.
Caiulo, D.
Calin, M.
Calvo, E.
Campanelli, M.
Cankocak, K.
Cantini, C.
Carlus, B.
Cautisanu, B.M.
Chalifour, M.
Chappuis, A.
Charitonidis, N.
Chatterjee, A.
Chiriacescuf, A.
Chiu, P.
Coan, T.
Conforti, S.
Cotte, P.
Crivelli, P.
Cuesta, C.
Dawson, J.
De Bonis, I.
De La Taille, C.
Delbart, A.
Di Luise, S.
Doizon, F.
Drancourt, C.
Duchesneau, D.
Dulucq, F.
Duval, F.
Emery, S.
Ereditato, A.
Falcone, A.
Fusshoeller, K.
Gallego-Ros, A.
Galymov, V.
Geffroy, N.
Gendotti, A.
Gherghel-Lascu, A.
Gil-Botella, I.
Girerd, C.
Gomoiu, M.C.
Gorodetzky, P.
Hamada, E.
Hanni, R.
Hasegawa, T.
Holin, A.
Horikawa, S.
Ikeno, M.
Jiménez, S.
Jipa, A.
Karolak, M.
Karyotakis, Y.
Kasai, S.
Kasami, K.
Kishishita, T.
Konari, H.
Kreslo, I.
Kryn, D.
Kunzé, P.
Kurokawa, M.
Kuromori, Y.
Lastoria, C.
Lazanu, I.
Lehmann-Miotto, G.
Leyton, M.
Lira, N.
Liubarska, M.
Loo, K.
Lorca, D.
Lutz, P.
Lux, T.
Maalampi, J.
Maire, G.
Maki, M.
Manenti, L.
Margineanu, R.M.
Marteau, J.
Martin-Chassard, G.
Mathez, H.
Mazzucato, E.
Misitano, G.
Mladenov, D.
Bueno, L. Molina
Mosu, T.S.
Mu, W.
Murphy, S.
Nakayoshi, K.
Narita, S.
Navas-Nicolás, D.
Negishi, K.
Nessi, M.
Niculescu-Oglinzanu, M.
Noto, F.
Noury, A.
Onishchuk, Y.
Palomares, C.
Parvu, M.
Patzak, T.
Penichot, Y.
Pennacchio, E.
Periale, L.
Pessard, H.
Pietropaolo, F.
Pugnere, D.
Radics, B.
Redondo, D.
Regenfus, C.
Remoto, A.
Resnati, F.
Ristea, O.
Rubbia, A.
Saftoiu, A.
Sakashita, K.
Sanchez, F.
Santos, C.
Scarpelli, A.
Schloesser, C.
Sendai, K.
Sergiampietri, F.
Shahsavarani, S.
Shoji, M.
Sinclair, J.
Soto-Oton, J.
Stanca, D.I.
Stefan, D.
Sulej, R.
Tanaka, M.
Toboaru, V.
Tonazzo, A.
Tromeur, W.
Trzaska, W.H.
Uchida, T.
Urda, L.
Vannucci, F.
Vasseur, G.
Verdugo, A.
Viant, T.
Vihonen, S.
Vilalte, S.
Weber, M.
Wu, S.
Yu, J.
Zambelli, L.
Zito, M.
author_facet Aimard, B.
Aizawa, L.
Alt, C.
Asaadi, J.
Auger, M.
Aushev, V.
Autiero, D.
Balaceanu, A.
Balik, G.
Balleyguier, L.
Bechetoille, E.
Belver, D.
Blebea-Apostu, A.M.
Bolognesi, S.
Bordoni, S.
Bourgeois, N.
Bourguille, B.
Bremer, J.
Brown, G.
Brunetti, L.
Brunetti, G.
Caiulo, D.
Calin, M.
Calvo, E.
Campanelli, M.
Cankocak, K.
Cantini, C.
Carlus, B.
Cautisanu, B.M.
Chalifour, M.
Chappuis, A.
Charitonidis, N.
Chatterjee, A.
Chiriacescuf, A.
Chiu, P.
Coan, T.
Conforti, S.
Cotte, P.
Crivelli, P.
Cuesta, C.
Dawson, J.
De Bonis, I.
De La Taille, C.
Delbart, A.
Di Luise, S.
Doizon, F.
Drancourt, C.
Duchesneau, D.
Dulucq, F.
Duval, F.
Emery, S.
Ereditato, A.
Falcone, A.
Fusshoeller, K.
Gallego-Ros, A.
Galymov, V.
Geffroy, N.
Gendotti, A.
Gherghel-Lascu, A.
Gil-Botella, I.
Girerd, C.
Gomoiu, M.C.
Gorodetzky, P.
Hamada, E.
Hanni, R.
Hasegawa, T.
Holin, A.
Horikawa, S.
Ikeno, M.
Jiménez, S.
Jipa, A.
Karolak, M.
Karyotakis, Y.
Kasai, S.
Kasami, K.
Kishishita, T.
Konari, H.
Kreslo, I.
Kryn, D.
Kunzé, P.
Kurokawa, M.
Kuromori, Y.
Lastoria, C.
Lazanu, I.
Lehmann-Miotto, G.
Leyton, M.
Lira, N.
Liubarska, M.
Loo, K.
Lorca, D.
Lutz, P.
Lux, T.
Maalampi, J.
Maire, G.
Maki, M.
Manenti, L.
Margineanu, R.M.
Marteau, J.
Martin-Chassard, G.
Mathez, H.
Mazzucato, E.
Misitano, G.
Mladenov, D.
Bueno, L. Molina
Mosu, T.S.
Mu, W.
Murphy, S.
Nakayoshi, K.
Narita, S.
Navas-Nicolás, D.
Negishi, K.
Nessi, M.
Niculescu-Oglinzanu, M.
Noto, F.
Noury, A.
Onishchuk, Y.
Palomares, C.
Parvu, M.
Patzak, T.
Penichot, Y.
Pennacchio, E.
Periale, L.
Pessard, H.
Pietropaolo, F.
Pugnere, D.
Radics, B.
Redondo, D.
Regenfus, C.
Remoto, A.
Resnati, F.
Ristea, O.
Rubbia, A.
Saftoiu, A.
Sakashita, K.
Sanchez, F.
Santos, C.
Scarpelli, A.
Schloesser, C.
Sendai, K.
Sergiampietri, F.
Shahsavarani, S.
Shoji, M.
Sinclair, J.
Soto-Oton, J.
Stanca, D.I.
Stefan, D.
Sulej, R.
Tanaka, M.
Toboaru, V.
Tonazzo, A.
Tromeur, W.
Trzaska, W.H.
Uchida, T.
Urda, L.
Vannucci, F.
Vasseur, G.
Verdugo, A.
Viant, T.
Vihonen, S.
Vilalte, S.
Weber, M.
Wu, S.
Yu, J.
Zambelli, L.
Zito, M.
author_sort Aimard, B.
collection CERN
description We report the results of the analyses of the cosmic ray data collected with a 4 tonne (3×1×1 m3) active mass (volume) Liquid Argon Time-Projection Chamber (TPC) operated in a dual-phase mode. We present a detailed study of the TPC's response, its main detector parameters and performance. The results are important for the understanding and further developments of the dual-phase technology, thanks to the verification of key aspects, such as the extraction of electrons from liquid to gas and their amplification through the entire one square metre readout plain, gain stability, purity and charge sharing between readout views.
id cern-2765254
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27652542023-08-22T03:44:52Zdoi:10.1088/1748-0221/16/08/P08063http://cds.cern.ch/record/2765254engAimard, B.Aizawa, L.Alt, C.Asaadi, J.Auger, M.Aushev, V.Autiero, D.Balaceanu, A.Balik, G.Balleyguier, L.Bechetoille, E.Belver, D.Blebea-Apostu, A.M.Bolognesi, S.Bordoni, S.Bourgeois, N.Bourguille, B.Bremer, J.Brown, G.Brunetti, L.Brunetti, G.Caiulo, D.Calin, M.Calvo, E.Campanelli, M.Cankocak, K.Cantini, C.Carlus, B.Cautisanu, B.M.Chalifour, M.Chappuis, A.Charitonidis, N.Chatterjee, A.Chiriacescuf, A.Chiu, P.Coan, T.Conforti, S.Cotte, P.Crivelli, P.Cuesta, C.Dawson, J.De Bonis, I.De La Taille, C.Delbart, A.Di Luise, S.Doizon, F.Drancourt, C.Duchesneau, D.Dulucq, F.Duval, F.Emery, S.Ereditato, A.Falcone, A.Fusshoeller, K.Gallego-Ros, A.Galymov, V.Geffroy, N.Gendotti, A.Gherghel-Lascu, A.Gil-Botella, I.Girerd, C.Gomoiu, M.C.Gorodetzky, P.Hamada, E.Hanni, R.Hasegawa, T.Holin, A.Horikawa, S.Ikeno, M.Jiménez, S.Jipa, A.Karolak, M.Karyotakis, Y.Kasai, S.Kasami, K.Kishishita, T.Konari, H.Kreslo, I.Kryn, D.Kunzé, P.Kurokawa, M.Kuromori, Y.Lastoria, C.Lazanu, I.Lehmann-Miotto, G.Leyton, M.Lira, N.Liubarska, M.Loo, K.Lorca, D.Lutz, P.Lux, T.Maalampi, J.Maire, G.Maki, M.Manenti, L.Margineanu, R.M.Marteau, J.Martin-Chassard, G.Mathez, H.Mazzucato, E.Misitano, G.Mladenov, D.Bueno, L. MolinaMosu, T.S.Mu, W.Murphy, S.Nakayoshi, K.Narita, S.Navas-Nicolás, D.Negishi, K.Nessi, M.Niculescu-Oglinzanu, M.Noto, F.Noury, A.Onishchuk, Y.Palomares, C.Parvu, M.Patzak, T.Penichot, Y.Pennacchio, E.Periale, L.Pessard, H.Pietropaolo, F.Pugnere, D.Radics, B.Redondo, D.Regenfus, C.Remoto, A.Resnati, F.Ristea, O.Rubbia, A.Saftoiu, A.Sakashita, K.Sanchez, F.Santos, C.Scarpelli, A.Schloesser, C.Sendai, K.Sergiampietri, F.Shahsavarani, S.Shoji, M.Sinclair, J.Soto-Oton, J.Stanca, D.I.Stefan, D.Sulej, R.Tanaka, M.Toboaru, V.Tonazzo, A.Tromeur, W.Trzaska, W.H.Uchida, T.Urda, L.Vannucci, F.Vasseur, G.Verdugo, A.Viant, T.Vihonen, S.Vilalte, S.Weber, M.Wu, S.Yu, J.Zambelli, L.Zito, M.Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rayshep-exParticle Physics - Experimentphysics.ins-detDetectors and Experimental TechniquesWe report the results of the analyses of the cosmic ray data collected with a 4 tonne (3×1×1 m3) active mass (volume) Liquid Argon Time-Projection Chamber (TPC) operated in a dual-phase mode. We present a detailed study of the TPC's response, its main detector parameters and performance. The results are important for the understanding and further developments of the dual-phase technology, thanks to the verification of key aspects, such as the extraction of electrons from liquid to gas and their amplification through the entire one square metre readout plain, gain stability, purity and charge sharing between readout views.We report the results of the analyses of the cosmic ray data collected with a 4 tonne (3$\times$1$\times$1~m$^3$) active mass (volume) Liquid Argon Time-Projection Chamber (TPC) operated in a dual-phase mode. We present a detailed study of the TPC's response, its main detector parameters and performance. The results are important for the understanding and further developments of the dual-phase technology, thanks to the verification of key aspects, such as the extraction of electrons from liquid to gas and their amplification through the entire one square metre readout plain, gain stability, purity and charge sharing between readout views.arXiv:2104.08227oai:cds.cern.ch:27652542021-04-16
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
Aimard, B.
Aizawa, L.
Alt, C.
Asaadi, J.
Auger, M.
Aushev, V.
Autiero, D.
Balaceanu, A.
Balik, G.
Balleyguier, L.
Bechetoille, E.
Belver, D.
Blebea-Apostu, A.M.
Bolognesi, S.
Bordoni, S.
Bourgeois, N.
Bourguille, B.
Bremer, J.
Brown, G.
Brunetti, L.
Brunetti, G.
Caiulo, D.
Calin, M.
Calvo, E.
Campanelli, M.
Cankocak, K.
Cantini, C.
Carlus, B.
Cautisanu, B.M.
Chalifour, M.
Chappuis, A.
Charitonidis, N.
Chatterjee, A.
Chiriacescuf, A.
Chiu, P.
Coan, T.
Conforti, S.
Cotte, P.
Crivelli, P.
Cuesta, C.
Dawson, J.
De Bonis, I.
De La Taille, C.
Delbart, A.
Di Luise, S.
Doizon, F.
Drancourt, C.
Duchesneau, D.
Dulucq, F.
Duval, F.
Emery, S.
Ereditato, A.
Falcone, A.
Fusshoeller, K.
Gallego-Ros, A.
Galymov, V.
Geffroy, N.
Gendotti, A.
Gherghel-Lascu, A.
Gil-Botella, I.
Girerd, C.
Gomoiu, M.C.
Gorodetzky, P.
Hamada, E.
Hanni, R.
Hasegawa, T.
Holin, A.
Horikawa, S.
Ikeno, M.
Jiménez, S.
Jipa, A.
Karolak, M.
Karyotakis, Y.
Kasai, S.
Kasami, K.
Kishishita, T.
Konari, H.
Kreslo, I.
Kryn, D.
Kunzé, P.
Kurokawa, M.
Kuromori, Y.
Lastoria, C.
Lazanu, I.
Lehmann-Miotto, G.
Leyton, M.
Lira, N.
Liubarska, M.
Loo, K.
Lorca, D.
Lutz, P.
Lux, T.
Maalampi, J.
Maire, G.
Maki, M.
Manenti, L.
Margineanu, R.M.
Marteau, J.
Martin-Chassard, G.
Mathez, H.
Mazzucato, E.
Misitano, G.
Mladenov, D.
Bueno, L. Molina
Mosu, T.S.
Mu, W.
Murphy, S.
Nakayoshi, K.
Narita, S.
Navas-Nicolás, D.
Negishi, K.
Nessi, M.
Niculescu-Oglinzanu, M.
Noto, F.
Noury, A.
Onishchuk, Y.
Palomares, C.
Parvu, M.
Patzak, T.
Penichot, Y.
Pennacchio, E.
Periale, L.
Pessard, H.
Pietropaolo, F.
Pugnere, D.
Radics, B.
Redondo, D.
Regenfus, C.
Remoto, A.
Resnati, F.
Ristea, O.
Rubbia, A.
Saftoiu, A.
Sakashita, K.
Sanchez, F.
Santos, C.
Scarpelli, A.
Schloesser, C.
Sendai, K.
Sergiampietri, F.
Shahsavarani, S.
Shoji, M.
Sinclair, J.
Soto-Oton, J.
Stanca, D.I.
Stefan, D.
Sulej, R.
Tanaka, M.
Toboaru, V.
Tonazzo, A.
Tromeur, W.
Trzaska, W.H.
Uchida, T.
Urda, L.
Vannucci, F.
Vasseur, G.
Verdugo, A.
Viant, T.
Vihonen, S.
Vilalte, S.
Weber, M.
Wu, S.
Yu, J.
Zambelli, L.
Zito, M.
Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays
title Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays
title_full Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays
title_fullStr Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays
title_full_unstemmed Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays
title_short Performance study of a $3\times1\times1$ m$^3$ dual phase liquid Argon Time Projection Chamber exposed to cosmic rays
title_sort performance study of a $3\times1\times1$ m$^3$ dual phase liquid argon time projection chamber exposed to cosmic rays
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/16/08/P08063
http://cds.cern.ch/record/2765254
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AT caiulod performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT calinm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT calvoe performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT campanellim performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT cankocakk performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT cantinic performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT carlusb performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT cautisanubm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT chalifourm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT chappuisa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT charitonidisn performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT chatterjeea performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT chiriacescufa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT chiup performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT coant performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT confortis performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT cottep performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT crivellip performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT cuestac performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT dawsonj performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT debonisi performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT delataillec performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT delbarta performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT diluises performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT doizonf performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT drancourtc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT duchesneaud performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT dulucqf performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT duvalf performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT emerys performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT ereditatoa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT falconea performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT fusshoellerk performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT gallegorosa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT galymovv performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT geffroyn performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT gendottia performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT gherghellascua performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT gilbotellai performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT girerdc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT gomoiumc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT gorodetzkyp performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT hamadae performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT hannir performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT hasegawat performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT holina performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT horikawas performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT ikenom performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT jimenezs performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT jipaa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT karolakm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT karyotakisy performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kasais performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kasamik performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kishishitat performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT konarih performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kresloi performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT krynd performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kunzep performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kurokawam performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT kuromoriy performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT lastoriac performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT lazanui performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT lehmannmiottog performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT leytonm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT liran performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT liubarskam performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT look performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT lorcad performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT lutzp performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT luxt performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT maalampij performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT maireg performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT makim performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT manentil performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT margineanurm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT marteauj performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT martinchassardg performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT mathezh performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT mazzucatoe performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT misitanog performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT mladenovd performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT buenolmolina performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT mosuts performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT muw performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT murphys performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT nakayoshik performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT naritas performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT navasnicolasd performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT negishik performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT nessim performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT niculescuoglinzanum performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT notof performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT nourya performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT onishchuky performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT palomaresc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT parvum performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT patzakt performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT penichoty performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT pennacchioe performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT perialel performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT pessardh performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT pietropaolof performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT pugnered performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT radicsb performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT redondod performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT regenfusc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT remotoa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT resnatif performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT risteao performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT rubbiaa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT saftoiua performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sakashitak performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sanchezf performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT santosc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT scarpellia performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT schloesserc performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sendaik performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sergiampietrif performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT shahsavaranis performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT shojim performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sinclairj performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sotootonj performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT stancadi performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT stefand performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT sulejr performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT tanakam performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT toboaruv performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT tonazzoa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT tromeurw performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT trzaskawh performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT uchidat performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT urdal performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT vannuccif performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT vasseurg performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT verdugoa performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT viantt performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT vihonens performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT vilaltes performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT weberm performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT wus performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT yuj performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT zambellil performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays
AT zitom performancestudyofa3times1times1m3dualphaseliquidargontimeprojectionchamberexposedtocosmicrays