Baseline Optimization of Reactor Neutrino Experiments

  • We have applied the χ2-minimization technique that takes backgrounds and systematic uncertainties into account to optimize the baseline of the reactor neutrino experiments designed for determining the mixing angle θ13 of neutrino. The effect of oscillation, systematic errors, statistic errors and backgrounds in the optimization are investigated. Although the experimental conditions may be very different, the optimal baseline is constrained in a narrow range.
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SUN Ya-Xuan, CAO Jun, LU Jin-Biao, MA Yu-Qian, WANG Yi-Fang and YANG Chang-Gen. Baseline Optimization of Reactor Neutrino Experiments[J]. Chinese Physics C, 2005, 29(6): 543-548.
SUN Ya-Xuan, CAO Jun, LU Jin-Biao, MA Yu-Qian, WANG Yi-Fang and YANG Chang-Gen. Baseline Optimization of Reactor Neutrino Experiments[J]. Chinese Physics C, 2005, 29(6): 543-548. shu
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Received: 2004-11-15
Revised: 1900-01-01
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Baseline Optimization of Reactor Neutrino Experiments

    Corresponding author: SUN Ya-Xuan,
  • Experimental Center,Institute of High Energy Physics,Beijing 100049,China2 Key Laboratory of particle Astrophysics,Institute of High Energy Physics,Beijing 100049,China3 Physics Department,University of California at Berkeley and Lawrence Berkeley National Laboratory,Berkeley,California 94720,USA

Abstract: We have applied the χ2-minimization technique that takes backgrounds and systematic uncertainties into account to optimize the baseline of the reactor neutrino experiments designed for determining the mixing angle θ13 of neutrino. The effect of oscillation, systematic errors, statistic errors and backgrounds in the optimization are investigated. Although the experimental conditions may be very different, the optimal baseline is constrained in a narrow range.

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