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1\providecommand{\href}[2]{#2}\begingroup\raggedright\begin{thebibliography}{10}
2
3\bibitem{Dermisek:2000hr}
4R.~Dermisek, A.~Mafi, and S.~Raby, {\it {SUSY GUT}s under siege: Proton decay},
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7
8\bibitem{Babu:1998wi}
9K.~S. Babu, J.~C. Pati, and F.~Wilczek, {\it Fermion masses, neutrino
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13
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15G.~Altarelli, F.~Feruglio, and I.~Masina, {\it From minimal to realistic
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18
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20J.~Beacom and M.~Vagins, {\it {GADZOOKS}! antineutrino spectroscopy with large
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23
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29
30\bibitem{Fukugita:1986hr}
31M.~Fukugita and T.~Yanagida, {\it Baryogenesis without grand unification},
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34\bibitem{uno}
35{\it {UNO} proposal},  \href{http://xxx.lanl.gov/abs/Preprint SBHEP01-3, June
36  2001}{{\tt Preprint SBHEP01-3, June 2001}}.
37
38\bibitem{hyperk}
39{\it {\tt http://jkt.tokai.jaeri.go.jp/}}, .
40
41\bibitem{Lucotte:2004mi}
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45
46\bibitem{Fogli:2004ff}
47G.~L. Fogli, E.~Lisi, A.~Mirizzi, and D.~Montanino, {\it Probing supernova
48  shock waves and neutrino flavor transitions in next-generation
49  water-{C}herenkov detectors},  {\em JCAP} {\bf 0504} (2005) 002,
50  [\href{http://xxx.lanl.gov/abs/hep-ph/0412046}{{\tt hep-ph/0412046}}].
51
52\bibitem{Minakata:2001cd}
53H.~Minakata, H.~Nunokawa, R.~Tomas, and J.~W.~F. Valle, {\it Probing supernova
54  physics with neutrino oscillations},  {\em Phys. Lett.} {\bf B542} (2002)
55  239--244, [\href{http://xxx.lanl.gov/abs/hep-ph/0112160}{{\tt
56  hep-ph/0112160}}].
57
58\bibitem{Lunardini:2003eh}
59C.~Lunardini and A.~Y. Smirnov, {\it Probing the neutrino mass hierarchy and
60  the 13-mixing with supernovae},  {\em JCAP} {\bf 0306} (2003) 009,
61  [\href{http://xxx.lanl.gov/abs/hep-ph/0302033}{{\tt hep-ph/0302033}}].
62
63\bibitem{Ando:2005ka}
64S.~Ando, J.~F. Beacom, and H.~Yuksel, {\it Detection of neutrinos from
65  supernovae in nearby galaxies},  {\em Phys. Rev. Lett.} {\bf 95} (2005)
66  171101, [\href{http://xxx.lanl.gov/abs/astro-ph/0503321}{{\tt
67  astro-ph/0503321}}].
68
69\bibitem{Malek:2002ns}
70{\bf Super-Kamiokande} Collaboration, M.~Malek {\em et.~al.}, {\it Search for
71  supernova relic neutrinos at {S}uper-{K}amiokande},  {\em Phys. Rev. Lett.}
72  {\bf 90} (2003) 061101, [\href{http://xxx.lanl.gov/abs/hep-ex/0209028}{{\tt
73  hep-ex/0209028}}].
74
75\bibitem{Ando:2004sb}
76S.~Ando, {\it Cosmic star formation history and the future observation of
77  supernova relic neutrinos},  {\em Astrophys. J.} {\bf 607} (2004) 20--31,
78  [\href{http://xxx.lanl.gov/abs/astro-ph/0401531}{{\tt astro-ph/0401531}}].
79
80\bibitem{Yuksel:2005ae}
81H.~Yuksel, S.~Ando, and J.~F. Beacom, {\it Direct measurement of supernova
82  neutrino emission parameters with a gadolinium enhanced {S}uper-{K}amiokande
83  detector},  \href{http://xxx.lanl.gov/abs/astro-ph/0509297}{{\tt
84  astro-ph/0509297}}.
85
86\bibitem{SPL}
87B.~Autin {\em et.~al.}, {\it Conceptual design of the {SPL}, a high-power
88  superconducting {H}-linac at {CERN}}, . CERN-2000-012.
89
90\bibitem{SPL-Physics}
91{\bf {CERN} working group on {S}uper {B}eams} Collaboration, J.~J.
92  Gomez-Cadenas {\em et.~al.}, {\it Physics potential of very intense
93  conventional neutrino beams},
94  \href{http://xxx.lanl.gov/abs/hep-ph/0105297}{{\tt hep-ph/0105297}}.
95
96\bibitem{SPL-Physics2}
97A.~Blondel {\em et.~al.}, {\it Superbeam studies at {CERN}},  {\em Nucl.
98  Instrum. Meth.} {\bf A503} (2001) 173--178.
99
100\bibitem{SPL-Physics3}
101M.~Mezzetto, {\it Physics potential of the {SPL} super beam},  {\em J. Phys.}
102  {\bf G29} (2003) 1781--1784,
103  [\href{http://xxx.lanl.gov/abs/hep-ex/0302005}{{\tt hep-ex/0302005}}].
104
105\bibitem{YELLOW}
106M.~Apollonio {\em et.~al.}, {\it Oscillation physics with a neutrino factory.},
107   \href{http://xxx.lanl.gov/abs/hep-ph/0210192}{{\tt hep-ph/0210192}}.
108
109\bibitem{Mosca}
110L.~Mosca, {\it A european megaton project at {F}rejus},  {\em Nucl. Phys. Proc.
111  Suppl.} {\bf 138} (2005) 203--205.
112
113\bibitem{Campagne:2004wt}
114J.~Campagne and A.~Cazes, {\it The theta(13) and delta({CP}) sensitivities of
115  the {SPL}-{F}rejus project revisited},  {\em to appear in Eur. Phys. J. C}
116  (2005) [\href{http://xxx.lanl.gov/abs/hep-ex/0411062}{{\tt hep-ex/0411062}}].
117
118\bibitem{Garoby-SPL}
119R.~Garoby, {\it The {SPL} at {CERN}},  {\em AIP Conf. Proc.} {\bf 773} (2005)
120  239--243.
121
122\bibitem{SIMONE1}
123S.~Gilardoni {\em et.~al.}, {\it Horn {R}\&{D} for 2002-2003},  {\em AIP Conf.
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125
126\bibitem{DONEGA}
127A.~Blondel, M.~Donega, and S.~Gilardoni, {\it Study of (anti-)neutrino fluxes
128  from a horn neutrino beam using 2.2-{G}e{V} protons}, . CERN-NUFACT-NOTE-078.
129
130\bibitem{Harp}
131{\bf {HARP} Collaboration} Collaboration, M.~Catanesi {\em et.~al.}
132  CERN-SPSC/2001-017, SPSC/P322, May 2001.
133
134\bibitem{MMNufact04}
135M.~Mezzetto, {\it {SPL} and beta beams to the {F}rejus},  {\em Nucl. Phys.
136  Proc. Suppl.} {\bf 149} (2005) 179--181.
137
138\bibitem{Campagne}
139J.-E. Campagne, {\it The {SPL} - {F}rejus physics potential},
140  \href{http://xxx.lanl.gov/abs/hep-ex/0510029}{{\tt hep-ex/0510029}}.
141
142\bibitem{Globes}
143P.~Huber, M.~Lindner, and W.~Winter, {\it Simulation of long-baseline neutrino
144  oscillation experiments with {GL}o{BES}},  {\em Comput. Phys. Commun.} {\bf
145  167} (2005) 195, [\href{http://xxx.lanl.gov/abs/hep-ph/0407333}{{\tt
146  hep-ph/0407333}}].
147
148\bibitem{Zucchelli:2002sa}
149P.~Zucchelli, {\it A novel concept for a anti-nu/e / nu/e neutrino factory: the
150  beta beam},  {\em Phys. Lett.} {\bf B532} (2002) 166--172.
151
152\bibitem{Sortais}
153P.~Sortais, {\it presentations at the moriond workshop on radioactive beams,
154  {L}es {A}rcs ({F}rance) 2003, {ECR} technology, {\tt
155  http://moriond.in2p3.fr/radio}}, .
156
157\bibitem{Eurisol}
158{\it {\tt http://www.ganil.fr/eurisol/}}, .
159
160\bibitem{Rubbia:2006pi}
161C.~Rubbia, A.~Ferrari, Y.~Kadi, and V.~Vlachoudis, {\it Beam cooling with
162  ionisation losses},  \href{http://xxx.lanl.gov/abs/hep-ph/0602032}{{\tt
163  hep-ph/0602032}}.
164
165\bibitem{VolutaDaAndrea}
166P.~Huber, M.~Lindner, and W.~Winter, {\it Superbeams versus neutrino
167  factories},  {\em Nucl. Phys.} {\bf B645} (2002) 3--48,
168  [\href{http://xxx.lanl.gov/abs/hep-ph/0204352}{{\tt hep-ph/0204352}}].
169
170\bibitem{Mezzetto:2003ub}
171M.~Mezzetto, {\it Physics reach of the beta beam},  {\em J. Phys.} {\bf G29}
172  (2003) 1771--1776, [\href{http://xxx.lanl.gov/abs/hep-ex/0302007}{{\tt
173  hep-ex/0302007}}].
174
175\bibitem{Bouchez:2003fy}
176J.~Bouchez, M.~Lindroos, and M.~Mezzetto, {\it Beta beams: Present design and
177  expected performances},  {\em AIP Conf. Proc.} {\bf 721} (2004) 37--47,
178  [\href{http://xxx.lanl.gov/abs/hep-ex/0310059}{{\tt hep-ex/0310059}}].
179
180\bibitem{Mezzetto:2004gs}
181M.~Mezzetto, {\it Beta beams},  {\em Nucl. Phys. Proc. Suppl.} {\bf 143} (2005)
182  309--316, [\href{http://xxx.lanl.gov/abs/hep-ex/0410083}{{\tt
183  hep-ex/0410083}}].
184
185\bibitem{Donini:2004hu}
186A.~Donini, E.~Fernandez-Martinez, P.~Migliozzi, S.~Rigolin, and
187  L.~Scotto~Lavina, {\it Study of the eightfold degeneracy with a standard
188  beta-beam and a super-beam facility},  {\em Nucl. Phys.} {\bf B710} (2005)
189  402--424, [\href{http://xxx.lanl.gov/abs/hep-ph/0406132}{{\tt
190  hep-ph/0406132}}].
191
192\bibitem{Bernabeu}
193J.~Bernabeu, J.~Burguet-Castell, C.~Espinoza, and M.~Lindroos, {\it
194  Monochromatic neutrino beams},
195  \href{http://xxx.lanl.gov/abs/hep-ph/0505054}{{\tt hep-ph/0505054}}.
196
197\bibitem{Sato}
198J.~Sato, {\it Monoenergetic neutrino beam for long baseline experiments},  {\em
199  Phys. Rev. Lett.} {\bf 95} (2005) 131804,
200  [\href{http://xxx.lanl.gov/abs/hep-ph/0503144}{{\tt hep-ph/0503144}}].
201
202\bibitem{Volpe:2006in}
203C.~Volpe, {\it Topical review on 'beta-beams'},
204  \href{http://xxx.lanl.gov/abs/hep-ph/0605033}{{\tt hep-ph/0605033}}.
205
206\bibitem{Campagne:2006yx}
207J.~E. Campagne, M.~Maltoni, M.~Mezzetto, and T.~Schwetz, {\it Physics potential
208  of the cern-memphys neutrino oscillation project},
209  \href{http://xxx.lanl.gov/abs/hep-ph/0603172}{{\tt hep-ph/0603172}}.
210
211\bibitem{latestJJ}
212J.~Burguet-Castell, D.~Casper, E.~Couce, J.~J. Gomez-Cadenas, and P.~Hernandez,
213  {\it Optimal beta-beam at the {CERN-SPS}},  {\em Nucl. Phys.} {\bf B725}
214  (2005) 306--326, [\href{http://xxx.lanl.gov/abs/hep-ph/0503021}{{\tt
215  hep-ph/0503021}}].
216
217\bibitem{HighEnergy}
218J.~Burguet-Castell, D.~Casper, J.~J. Gomez-Cadenas, P.~Hernandez, and
219  F.~Sanchez, {\it Neutrino oscillation physics with a higher gamma beta-
220  beam},  {\em Nucl. Phys.} {\bf B695} (2004) 217--240,
221  [\href{http://xxx.lanl.gov/abs/hep-ph/0312068}{{\tt hep-ph/0312068}}].
222
223\bibitem{HighEnergy2}
224F.~Terranova, A.~Marotta, P.~Migliozzi, and M.~Spinetti, {\it High energy beta
225  beams without massive detectors},  {\em Eur. Phys. J.} {\bf C38} (2004)
226  69--77, [\href{http://xxx.lanl.gov/abs/hep-ph/0405081}{{\tt
227  hep-ph/0405081}}].
228
229\bibitem{HuberBB}
230P.~Huber, M.~Lindner, M.~Rolinec, and W.~Winter, {\it Physics and optimization
231  of beta-beams: From low to very high gamma},
232  \href{http://xxx.lanl.gov/abs/hep-ph/0506237}{{\tt hep-ph/0506237}}.
233
234\bibitem{SuperSPS}
235O.~Bruning {\em et.~al.}, {\it {LHC} luminosity and energy upgrade: A
236  feasibility study}, . CERN-LHC-PROJECT-REPORT-626.
237
238\bibitem{MigNufact05}
239A.~Donini {\em et.~al.}, {\it Perspectives for a neutrino program based on the
240  upgrades of the {CERN} accelerator complex},
241  \href{http://xxx.lanl.gov/abs/hep-ph/0511134}{{\tt hep-ph/0511134}}.
242
243\bibitem{MatsPrivate}
244M.~Lindroos, {\it Base line design for a beta-beam neutrino facility}, .
245  EURISOL DS/TASK12/TN-05-02, to be published in Nucl.\ Phys.\ Proc.\ Suppl.\
246  (2006).
247
248\bibitem{Smy:2002rz}
249{S}uper-{K}amiokande collab., {\it Solar neutrino precision measurements using
250  all 1496 days of {S}uper-{K}amiokande-{I} data},  {\em Nucl. Phys. Proc.
251  Suppl.} {\bf 118} (2003) 25--32,
252  [\href{http://xxx.lanl.gov/abs/hep-ex/0208004}{{\tt hep-ex/0208004}}].
253
254\bibitem{Laguna}
255J.-E. Campagne {\em et.~al.}, {\it Large liquid detectors in {E}urope - {A}
256  scientific case},  \href{http://xxx.lanl.gov/abs/[in preparation]}{{\tt [in
257  preparation]}}.
258
259\end{thebibliography}\endgroup
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