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To maximize the light yield of the liquid scintillator (LS) for the Jiangmen Underground Neutrino Observatory (JUNO), a 20 t LS sample was produced in a pilot plant at Daya Bay.
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X.-F. Ding, L.-J. Wen, X. Zhou, Y.-Y. Ding, X.-C. Ye, L. Zhou, M.-C. Liu, H. Cai, J. Cao, Measurement of the fluorescence quantum yield of bis-MSB, Chin. Phys. C 39 (12) (2015) 126001 · 2015
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C. Buck, B. Gramlich, S. Wagner, Light propagation and fluorescence quantum yields in liquid scintillators, JINST 10 (09) (2015) P09007 · 2015
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F. P. An, et al., The Detector System of The Daya Bay Reactor Neutrino Experiment, Nucl. Instrum. Meth. A811 (2016) 133–161 · 2015
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X. Zhou, Q. Liu, M. Wurm, Q. Zhang, Y. Ding, Z. Zhang, Y. Zheng, L. Zhou, J. Cao, Y. Wang, Rayleigh scattering of linear alkylbenzene in large liquid scintillator detectors, Rev. Sci. Instrum. 86 (7) (2015) 073310 · 2015
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F. An, et al., Neutrino Physics with JUNO, J. Phys. G43 (3) (2016) 030401 · 2016
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Z. Djurcic, et al., JUNO Conceptual Design Report arXiv:1508.07166
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D. Adey, et al., Measurement of the Electron Antineutrino Oscillation with 1958 Days of Operation at Daya Bay, Phys. Rev. Lett. 121 (24) (2018) 241805 · 2018
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J. Cumming, S. Hans, M. Yeh, Improving Light Yield Measurements for Low-Yield Scintillators, Nucl. Instrum. Meth. A 925 (2019) 1–5 · 2019
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P. Lombardi, et al., Distillation and stripping pilot plants for the JUNO neutrino detector: Design, operations and reliability, Nucl. Instrum. Meth. A925 (2019) 6–17 · 2019
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D. Adey, et al., A high precision calibration of the nonlinear energy response at Daya Bay, Nucl. Instrum. Meth. A940 (2019) 230–242 · 2019
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doi:https://doi.org/10.1016/j.nima.2020.163860
Y. Zhang, Z. Yu, X. Li, Z. Deng, L. Wen, A complete optical model for liquid-scintillator detectors , Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 967 (2020) 163860 · 2020
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