380
L. Camilleri
51. Boger J et al 2000 Nucl. Instr. and Meth. A449 172
52. Watanabe H et al 2008 arXiv:0811.0735v2[hep-ex]
53. Aynutdinov V et al 2008 Nucl. Instr. and Meth. A588 99
54. Aslanides E et al (ANTARES Collaboration) 1999 arXiv:9907432[astro-ph]
55. Carr J (ANTARES Collaboration) 2008 Nucl. Instr. and Meth. A588 80
56. Belias A (2007) in Proceedings of the First workshop on Exotic Physics with Neutrino
Telescopes, EPNT06, page 97 arXiv:0701333[astro-ph]
57. Simeone F (On behalf of the NEMO Collaboration) 2008 Nucl. Instr. and Meth. A588 119
58. Ackermann M et al 2005 Astropart. Phys. 22 339
59. Aartsen M G et al (IceCube Collaboration) 2017 JINST 12 P03012
60. Aartsen M G et al (IceCube-Gen2 Collaboration) 2014 arXiv:1412.5106v2[astro-ph.HE]
61. Aartsen M G et al (IceCube-Gen2 Collaboration) 2017 J.Phys. G44 054006
62. Askaryan G 1962 Soviet Physics JETP-USSR 14 (2) 441
63. Gorham P W et al 2009 Astropart. Phys. 32 10
64. Gorham P W et al 2011 Astropart. Phys. 35 242
65. Allison P et al 2016 Phys. Rev. D93 082003
66. Barwick S W et al 2014 arXiv:1410.7369[astro-ph]
67. Wissel S A et al 2016 Published in PoS ICRC2015 1150
68. Hankins T H 1996 MNRAS 283 1027
69. Bray J D et al 2015 Astropart. Phys.65 22
70. Gorham P W et al 2004 Phys. Rev. Lett 93 041101
71. Buitink S et al 2010 Astron.Astrophys. 521 A47
72. Adrian-Martinez S et al (KM3Net Collaboration) 2016 J. Phys. G43 084001 and
arXiv:1601.07459v2[ astro-ph.IM]
73. Avrorin A D et al 2014 Nuc. Instrum. Meth. A742 82
74. Ball A E et al 2007 Eur. Phys. J. C49 1117
75. Acquistapace G et al 1998 CERN Yellow Report 98-02, INFN-AE-98-05
76. Amerio S et al 2004 Nucl. Instr. and Meth. A527 329
77. Amoruso S et al 2004 Nucl. Instr. and Meth. A516 68
78. Adams C et al 2018 arXiv:1802.08709v2[ physics.ins-det]
79. Rubbia A 2004 arXiv:0402110[hep-ph] and http://neutrino.ethz.ch/GLACIER/
80. Badertscher A 2012 arXiv:1204.3530v3[physics.ins-det]
81. Manenti L (ProtoDUNE Collaboration) 2017 arXiv:1705.05669v2[physics.ins-det]
82. http://t692.fnal.gov/ ArgoNeut: Mini LAr TPC Exposure to Fermilab’s NuMI Beam
83. Acciarri R et al 2015 arXiv:1503.01520v1[physics.ins-det]
84. A Proposal for a New Experiment Using the Booster and NuMI Beamlines: MicroBooNE
2007 Fermilab Proposal P974. and Acciarri R et al 2017 J.Inst 12 P02017
85. The MicroBooNE Collaboration 2017 MicroBooNE Public Note http://microboone.fnal.gov/
wp-content/uploads/MICROBOONE-NOTE-1026-PUB.pdf
86. He K et al 2015 arXiv:1512.03385v1[cs.CV] and Ronneberger O et al 2015 arXiv:
1505.04597v1[cs.CV]
87. Bonesini M (WA104 Collaboration) 2015 J. Phys.:Conf.Ser. 650 012015
88. Acciarri R 2017 et al arXiv:1601.02984v1[ physics.ins-det]
89. Heise J 2017 arXiv:1710.11584v1[ physics.ins-det]
90. Badertscher A et al 2005 Nucl. Instr. and Meth. A555 294
91. Holder M et al 1978 Nucl. Instr. and Meth. 148 235
92. Harris D A et al 2000 Nucl. Instr. and Meth. A447 377
93. Michael D G et al 2006 Phys. Rev. Lett. 97 191801 and references therein
94. De Winter K et al 1989 Nucl. Instr. and Meth. A278 670
95. Geiregat D et al 1993 Nucl. Instr. and Meth. A325 92
96. Ushida N et al 1986 Phys. Rev. Lett. 57 2897
97. Eskut E et al (1997) Nucl. Instr. and Meth. A401 7
98. Aoki S et al 1990 Nucl. Instr. and Meth. B51 466
99. Onengut G et al 2005 Phys. Lett. B613 105
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