PhDThis thesis describes the search for neutrino-production of single photons using the o - axis near detector at 280 metres (ND280) of the T2K experiment. A photon selection is used to perform the searches using the rst Fine Grained Detector (FGD1) of the ND280. The thesis also highlights the importance of systematic uncertainties in the analysis, since the selection is background dominated. After careful characterisation of the systematic uncertainties and estimation of the e ciency, it is concluded that, with the selected 39 data events and the expected background of 45 events, the limit for neutrino-induced single photons, at T2K energies, is 0:0903 x 10-38cm2=nucleon. This result can be com- pared with the expected limit of 0:...
Tokai to Kamioka (T2K) is a long-baseline neutrino oscillation experiment based in Japan, performing...
AbstractThe Near Detector at 280m (ND280) has been operating for over a year in the Tokai to Kamioka...
The contamination from ν ̄e in the T2K antineutrino beam is predicted to be approximately 1% and nee...
This thesis describes the search for neutrino-production of single photons using the o - axis near d...
The Tokai-to-Kamioka (T2K) experiment is a long-baseline (anti)neutrino experiment designed to make ...
PhDThe Tokai to Kamioka (T2K) experiment is designed to detect ! e appearance for the rst time from ...
The Tokai to Kamioka (T2K) long baseline neutrino oscillation experiment was designed to make precis...
The T2K experiment is a long baseline neutrino oscillation experiment. The most intense accelerator...
The T2K (Tokai to Kamioka) experiment is a long baseline neutrino experiment in Japan that consists ...
The electron (anti-)neutrino component of the T2K neutrino beam constitutes the largest background i...
The Tokai-to-Kamioka (T2K) experiment is a long-baseline neutrino study designed to measure neutrino...
The Tokai-to-Kamioka (T2K) experiment is a second generation longbaseline neutrino experiment and th...
T2K is a long-baseline neutrino oscillation experiment, situated in Japan, which measures the oscill...
We have applied a microscopic model for single photon emission in neutral current interactions on nu...
Neutrino neutral-current induced single photon production is a sub-leading order process for acceler...
Tokai to Kamioka (T2K) is a long-baseline neutrino oscillation experiment based in Japan, performing...
AbstractThe Near Detector at 280m (ND280) has been operating for over a year in the Tokai to Kamioka...
The contamination from ν ̄e in the T2K antineutrino beam is predicted to be approximately 1% and nee...
This thesis describes the search for neutrino-production of single photons using the o - axis near d...
The Tokai-to-Kamioka (T2K) experiment is a long-baseline (anti)neutrino experiment designed to make ...
PhDThe Tokai to Kamioka (T2K) experiment is designed to detect ! e appearance for the rst time from ...
The Tokai to Kamioka (T2K) long baseline neutrino oscillation experiment was designed to make precis...
The T2K experiment is a long baseline neutrino oscillation experiment. The most intense accelerator...
The T2K (Tokai to Kamioka) experiment is a long baseline neutrino experiment in Japan that consists ...
The electron (anti-)neutrino component of the T2K neutrino beam constitutes the largest background i...
The Tokai-to-Kamioka (T2K) experiment is a long-baseline neutrino study designed to measure neutrino...
The Tokai-to-Kamioka (T2K) experiment is a second generation longbaseline neutrino experiment and th...
T2K is a long-baseline neutrino oscillation experiment, situated in Japan, which measures the oscill...
We have applied a microscopic model for single photon emission in neutral current interactions on nu...
Neutrino neutral-current induced single photon production is a sub-leading order process for acceler...
Tokai to Kamioka (T2K) is a long-baseline neutrino oscillation experiment based in Japan, performing...
AbstractThe Near Detector at 280m (ND280) has been operating for over a year in the Tokai to Kamioka...
The contamination from ν ̄e in the T2K antineutrino beam is predicted to be approximately 1% and nee...