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Searching for Reactor Antineutrino F...
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Franke, Arthur James.
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Searching for Reactor Antineutrino Flavor Oscillations with the Double Chooz Far Detector.
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Searching for Reactor Antineutrino Flavor Oscillations with the Double Chooz Far Detector./
Author:
Franke, Arthur James.
Description:
331 p.
Notes:
Source: Dissertation Abstracts International, Volume: 74-05(E), Section: B.
Contained By:
Dissertation Abstracts International74-05B(E).
Subject:
Physics, Elementary Particles and High Energy. -
Online resource:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3548825
ISBN:
9781267846297
Searching for Reactor Antineutrino Flavor Oscillations with the Double Chooz Far Detector.
Franke, Arthur James.
Searching for Reactor Antineutrino Flavor Oscillations with the Double Chooz Far Detector.
- 331 p.
Source: Dissertation Abstracts International, Volume: 74-05(E), Section: B.
Thesis (Ph.D.)--Columbia University, 2013.
This dissertation presents results from a search for reactor nue flavor oscillations using the Double Chooz Far Detector. The search was performed by observing the rate and energy spectrum of nue interacting via Inverse Beta Decay in a Gd-doped liquid scintillator detector, and comparing the observation to an expectation based on a prediction of the emitted reactor flux. The Columbia University neutrino group was instrumental in construction of the Double Chooz Outer Veto, as well as the analysis efforts leading to two oscillation measurement results. The most recent analysis is presented herein, focusing on 251.27 days of data (or 33.71 GW-ton-years of exposure). In these data, 8249 IBD candidates were observed, compared to a signal+background prediction of 8936.8. A fit to a two-neutrino oscillation model considering event rate, spectral shape, and time yields a best-fit value of sin 2(2theta13) = 0.109 +/- 0.030 (stat.) +/- 0.025 (syst.) at Dm231 = 2.32 x 10--3 eV2, with c2RS /d.o.f. = 42.1/35. A frequentist method deems the null-oscillation hypothesis excluded by the data at 99.8% C.L., or 2.9sigma. These results are in agreement with the measurements of other modern reactor nue experiments.
ISBN: 9781267846297Subjects--Topical Terms:
1019488
Physics, Elementary Particles and High Energy.
Searching for Reactor Antineutrino Flavor Oscillations with the Double Chooz Far Detector.
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Source: Dissertation Abstracts International, Volume: 74-05(E), Section: B.
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Adviser: Michael H. Shaevitz.
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This dissertation presents results from a search for reactor nue flavor oscillations using the Double Chooz Far Detector. The search was performed by observing the rate and energy spectrum of nue interacting via Inverse Beta Decay in a Gd-doped liquid scintillator detector, and comparing the observation to an expectation based on a prediction of the emitted reactor flux. The Columbia University neutrino group was instrumental in construction of the Double Chooz Outer Veto, as well as the analysis efforts leading to two oscillation measurement results. The most recent analysis is presented herein, focusing on 251.27 days of data (or 33.71 GW-ton-years of exposure). In these data, 8249 IBD candidates were observed, compared to a signal+background prediction of 8936.8. A fit to a two-neutrino oscillation model considering event rate, spectral shape, and time yields a best-fit value of sin 2(2theta13) = 0.109 +/- 0.030 (stat.) +/- 0.025 (syst.) at Dm231 = 2.32 x 10--3 eV2, with c2RS /d.o.f. = 42.1/35. A frequentist method deems the null-oscillation hypothesis excluded by the data at 99.8% C.L., or 2.9sigma. These results are in agreement with the measurements of other modern reactor nue experiments.
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http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=3548825
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