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4 changes: 2 additions & 2 deletions chap2.tex
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Expand Up @@ -21,9 +21,9 @@ \section{Neutrino interactions at the GeV-scale}
The two kinds of QE interaction are shown in Fig.~\ref{fig:QEFD}\Yoshi{}{ADDRESSED - In the figure, the W isn't really a W$^+$; it could be going either way in time. You can only call it a W}.
\begin{figure}%
\centering
\subfloat[CCQE.]{\includegraphics[width=8cm]{images/neutrino_interactions/CCQE_FD.eps} \label{fig:CCQEFD}}
\subfloat[CCQE.]{\includegraphics[width=7.5cm]{images/neutrino_interactions/CCQE_FD.eps} \label{fig:CCQEFD}}
\hspace{1em}
\subfloat[NCQE.]{\includegraphics[width=8cm]{images/neutrino_interactions/NCQE_FD.eps} \label{fig:NCQEFD}}
\subfloat[NCQE.]{\includegraphics[width=7.5cm]{images/neutrino_interactions/NCQE_FD.eps} \label{fig:NCQEFD}}
\caption{Quasi-Elastic (QE) interactions of a $\nu_\mu$ with a nucleon. The small ellipse represents the neutrino interacting with the nucleon as a whole, rather than with an individual parton.}
\label{fig:QEFD}
\end{figure}
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199 changes: 199 additions & 0 deletions mythesis.bib
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Expand Up @@ -1116,3 +1116,202 @@ @article{LeadAtomicUnits
note = "",
author = "J. R. de Laeter and J. K. Böhlke and P. De Bièvre and H. Hidaka and H. S. Peiser and K. J. R. Rosman and P. D. P. Taylor",
}

@article{Qian20151,
title = "Neutrino mass hierarchy ",
journal = "Progress in Particle and Nuclear Physics ",
volume = "83",
number = "",
pages = "1 - 30",
year = "2015",
note = "",
issn = "0146-6410",
doi = "http://dx.doi.org/10.1016/j.ppnp.2015.05.002",
url = "http://www.sciencedirect.com/science/article/pii/S0146641015000307",
author = "X. Qian and P. Vogel",
keywords = "Neutrino oscillation",
keywords = "Neutrino mass hierarchy",
keywords = "Neutrino mixing ",
abstract = "Abstract The neutrino mass hierarchy, i.e., whether the ν 3 neutrino mass eigenstate is heavier or lighter than the ν 1 and ν 2 mass eigenstates, is one of the remaining undetermined fundamental features of the neutrino Standard Model. Its determination would represent an important step in the formulation of the generalized model, and would have a profound impact on the quest of the nature of neutrinos (Dirac or Majorana) and the search for a theory of flavor. In this review, we summarize the status of experimental and theoretical work in this field and explore the future opportunities that emerge in light of the recently discovered non-zero and relatively large third neutrino mixing angle θ 13 . "
}

@article{Z-PeakReferenceAtLEP,
title = "Precision electroweak measurements on the Z resonance ",
journal = "Physics Reports ",
volume = "427",
number = "5–6",
pages = "257 - 454",
year = "2006",
note = "",
issn = "0370-1573",
doi = "http://dx.doi.org/10.1016/j.physrep.2005.12.006",
url = "http://www.sciencedirect.com/science/article/pii/S0370157305005119",
author = "The ALEPH CollaborationThe DELPHI CollaborationThe L3 CollaborationThe OPAL CollaborationThe SLD CollaborationThe LEP Electroweak Working GroupThe SLD Electroweak and Heavy Flavour Groups",
keywords = "Electron–positron physics",
keywords = "Electroweak interactions",
keywords = "Decays of heavy intermediate gauge bosons",
keywords = "Fermion–antifermion production",
keywords = "Precision measurements at the Z resonance",
keywords = "Tests of the Standard Model",
keywords = "Radiative corrections",
keywords = "Effective coupling constants",
keywords = "Neutral weak current",
keywords = "Z boson",
keywords = "W boson",
keywords = "Top quark",
keywords = "Higgs boson ",
abstract = "We report on the final electroweak measurements performed with data taken at the Z resonance by the experiments operating at the electron–positron colliders \{SLC\} and LEP. The data consist of 17 million Z decays accumulated by the ALEPH, DELPHI, \{L3\} and \{OPAL\} experiments at LEP, and 600 thousand Z decays by the \{SLD\} experiment using a polarised beam at SLC. The measurements include cross-sections, forward–backward asymmetries and polarised asymmetries. The mass and width of the Z boson, m Z and Γ Z , and its couplings to fermions, for example the ρ parameter and the effective electroweak mixing angle for leptons, are precisely measured: m Z = 91.1875 ± 0.0021 GeV , Γ Z = 2.4952 ± 0.0023 GeV , ρ ℓ = 1.0050 ± 0.0010 , sin 2 θ eff lept = 0.23153 ± 0.00016 . The number of light neutrino species is determined to be 2.9840 ± 0.0082 , in agreement with the three observed generations of fundamental fermions. The results are compared to the predictions of the Standard Model (SM). At the Z-pole, electroweak radiative corrections beyond the running of the \{QED\} and \{QCD\} coupling constants are observed with a significance of five standard deviations, and in agreement with the Standard Model. Of the many Z-pole measurements, the forward–backward asymmetry in b-quark production shows the largest difference with respect to its \{SM\} expectation, at the level of 2.8 standard deviations. Through radiative corrections evaluated in the framework of the Standard Model, the Z-pole data are also used to predict the mass of the top quark, m t = 173 - 10 + 13 GeV , and the mass of the W boson, m W = 80.363 ± 0.032 GeV . These indirect constraints are compared to the direct measurements, providing a stringent test of the SM. Using in addition the direct measurements of m t and m W , the mass of the as yet unobserved \{SM\} Higgs boson is predicted with a relative uncertainty of about 50% and found to be less than 285 GeV at 95% confidence level. "
}

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archivePrefix = "arXiv",
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SLACcitation = "%%CITATION = HEP-PH/0208030;%%"
}

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collaboration = {MINOS Collaboration},
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volume = {81},
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pages = {072002},
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year = {2010},
month = {Apr},
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doi = {10.1103/PhysRevD.81.072002},
url = {http://link.aps.org/doi/10.1103/PhysRevD.81.072002}
}

@article{Colley:1979rt,
author = "Colley, D. C. and others",
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Anti-neutrino Interactions in the Energy Range 10-{GeV} to
50-{GeV}}",
journal = "Z. Phys.",
volume = "C2",
year = "1979",
pages = "187",
doi = "10.1007/BF01474659",
reportNumber = "SACLAY-DPhPE-79-12",
SLACcitation = "%%CITATION = ZEPYA,C2,187;%%"
}

@article{PhysRevD.74.012008,
title = {Precise measurement of neutrino and antineutrino differential cross sections},
author = {Tzanov, M. and Naples, D. and Boyd, S. and McDonald, J. and Radescu, V. and Johnson, R. A. and Suwonjandee, N. and Vakili, M. and Conrad, J. and Fleming, B. T. and Formaggio, J. and Kim, J. H. and Koutsoliotas, S. and McNulty, C. and Romosan, A. and Shaevitz, M. H. and Spentzouris, P. and Stern, E. G. and Vaitaitis, A. and Zimmerman, E. D. and Bernstein, R. H. and Bugel, L. and Lamm, M. J. and Marsh, W. and Nienaber, P. and Tobien, N. and Yu, J. and Adams, T. and Alton, A. and Bolton, T. and Goldman, J. and Goncharov, M. and de Barbaro, L. and Buchholz, D. and Schellman, H. and Zeller, G. P. and Brau, J. and Drucker, R. B. and Frey, R. and Mason, D. and Avvakumov, S. and de Barbaro, P. and Bodek, A. and Budd, H. and Harris, D. A. and McFarland, K. S. and Sakumoto, W. K. and Yang, U. K.},
journal = {Phys. Rev. D},
volume = {74},
issue = {1},
pages = {012008},
numpages = {16},
year = {2006},
month = {Jul},
publisher = {American Physical Society},
doi = {10.1103/PhysRevD.74.012008},
url = {http://link.aps.org/doi/10.1103/PhysRevD.74.012008}
}


@article{Auerbach:2002iy,
author = "Auerbach, L. B. and others",
title = "{Measurements of charged current reactions of muon
neutrinos on C-12}",
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volume = "C66",
year = "2002",
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eprint = "nucl-ex/0203011",
archivePrefix = "arXiv",
primaryClass = "nucl-ex",
SLACcitation = "%%CITATION = NUCL-EX/0203011;%%"
}

@article{Lyubushkin:2008pe,
author = "Lyubushkin, V and others",
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year = "2009",
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doi = "10.1140/epjc/s10052-009-1113-0",
eprint = "0812.4543",
archivePrefix = "arXiv",
primaryClass = "hep-ex",
SLACcitation = "%%CITATION = ARXIV:0812.4543;%%"
}

@article{Gluck:1998xa,
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@article{PhysRevD.89.093018,
title = {Status of three-neutrino oscillation parameters, circa 2013},
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@article{PhysRevLett.112.181801,
title = {Precise Measurement of the Neutrino Mixing Parameter ${\ensuremath{\theta}}_{23}$ from Muon Neutrino Disappearance in an Off-Axis Beam},
author = {Abe, K. and Adam, J. and Aihara, H. and Akiri, T. and Andreopoulos, C. and Aoki, S. and Ariga, A. and Ariga, T. and Assylbekov, S. and Autiero, D. and Barbi, M. and Barker, G. J. and Barr, G. and Bass, M. and Batkiewicz, M. and Bay, F. and Bentham, S. W. and Berardi, V. and Berger, B. E. and Berkman, S. and Bertram, I. and Bhadra, S. and Blaszczyk, F. d. M. and Blondel, A. and Bojechko, C. and Bordoni, S. and Boyd, S. B. and Brailsford, D. and Bravar, A. and Bronner, C. and Buchanan, N. and Calland, R. G. and Caravaca Rodr\'{\i}guez, J. and Cartwright, S. L. and Castillo, R. and Catanesi, M. G. and Cervera, A. and Cherdack, D. and Christodoulou, G. and Clifton, A. and Coleman, J. and Coleman, S. J. and Collazuol, G. and Connolly, K. and Cremonesi, L. and Dabrowska, A. and Danko, I. and Das, R. and Davis, S. and de Perio, P. and De Rosa, G. and Dealtry, T. and Dennis, S. 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collaboration = {(T2K Collaboration)},
journal = {Phys. Rev. Lett.},
volume = {112},
issue = {18},
pages = {181801},
numpages = {8},
year = {2014},
month = {May},
publisher = {American Physical Society},
doi = {10.1103/PhysRevLett.112.181801},
url = {http://link.aps.org/doi/10.1103/PhysRevLett.112.181801}
}


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