C. D. Shin
Chonnam National University
7 Papers
1 Citations
C. D. Shin is an academic researcher from Chonnam National University. The author has contributed to research in topics: Scintillator & Energy (signal processing). The author has an hindex of 4, co-authored 4 publications.
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Papers
Observation of Energy and Baseline Dependent Reactor Antineutrino Disappearance in the RENO Experiment.
J. H. Choi,W.Q. Choi,Y. Choi,H. I. Jang,J. S. Jang,Eunju Jeon,K. K. Joo,B. R. Kim,H. S. Kim,J. Y. Kim,S. B. Kim,Seyong Kim,W. Kim,Y. D. Kim,Y. J. Ko,Dae Hoon Lee,I. T. Lim,M. Y. Pac,I. G. Park,Jong-Min Park,R. G. Park,Hyonsan Seo,S. h. Seo,Y G Seon,C. D. Shin,K. Siyeon,J H Yang,I. S. Yeo,Intae Yu +28 more
TL;DR: The RENO experiment has analyzed about 500 live days of data to observe an energy dependent disappearance of reactor ν[over ¯]_{e} by comparing their prompt signal spectra measured in two identical near and far detectors and obtains a clear energy and baseline dependent disappearance.
Measurement of Reactor Antineutrino Oscillation Amplitude and Frequency at RENO.
G. Bak,J. H. Choi,H. I. Jang,J. S. Jang,S. H. Jeon,K. K. Joo,K. Ju,D. E. Jung,J. G. Kim,Jung-Hyun Kim,J. Y. Kim,S. B. Kim,Seyong Kim,W. Kim,E. Kwon,Dae Hoon Lee,Hang Lee,Y. C. Lee,I. T. Lim,Dong Ho Moon,M. Y. Pac,Y. S. Park,Carsten Rott,Hyonsan Seo,J. W. Seo,S. h. Seo,C. D. Shin,J. Y. Yang,J. Yoo,Intae Yu +29 more
TL;DR: The RENO experiment reports more precisely measured values of θ_{13} and |Δm_{ee}^{2}| using ∼2200 live days of data, and a clear energy and baseline dependent disappearance of reactor ν[over ¯]_{e} is observed in the deficit of the measured number of ν(over ¯)_{e}.
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Fuel-Composition Dependent Reactor Antineutrino Yield at RENO.
G. Bak,J. H. Choi,H. I. Jang,J. S. Jang,S. H. Jeon,K. K. Joo,K. Ju,D. E. Jung,J. G. Kim,Jung-Hyun Kim,J. Y. Kim,S. B. Kim,Seyong Kim,W. Kim,E. Kwon,Doh-Kwon Lee,Hang Lee,Y. C. Lee,I. T. Lim,Dong Ho Moon,M. Y. Pac,Y. S. Park,Carsten Rott,Hyonsan Seo,J. W. Seo,S. h. Seo,C. D. Shin,J. Y. Yang,J. Yoo,Intae Yu +29 more
TL;DR: Reevaluation of the ^{235}U IBD yield per fission may mostly solve the reactor antineutrino anomaly (RAA) while ^{239}Pu is not completely ruled out as a possible contributor to the anomaly.
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Measurement of cosmogenic <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"><mml:mrow><mml:mmultiscripts><mml:mrow><mml:mi>Li</mml:mi></mml:mrow><mml:mprescripts /><mml:none /><mml:mrow><mml:mn>9</mml:mn></mml:mrow></mml:mmultiscripts></mml:mrow></mml:math> and <mml:math x
H.-G. Lee,J. H. Choi,H. I. Jang,J. S. Jang,Sung Hwa Jeon,K. K. Joo,D. E. Jung,J.-G. Kim,J. H. Kim,J.-Y. Kim,S. B. Kim,S. Y. Kim,W. Kim,Eunhyang Kwon,D.-H. Lee,W.-J. Lee,I. T. Lim,Dong Ho Moon,M. Y. Pac,J. S. Park,R. G. Park,Hyeong-Ho Seo,J. W. Seo,C. D. Shin,B. S. Yang,J. Yoo,Suk Goo Yoon,I. S. Yeo,In Kyu Yu +28 more
TL;DR: In this article , the authors reported the measured production rates of unstable isotopes $9$Li and $8$He produced by cosmic muon spallation on $12}$C using two identical detectors of the RENO experiment.
Estimating Fluor Emission Spectra Using Digital Image Analysis Compared to Spectrophotometer Measurements
TL;DR: In this article , a method for obtaining the spectra of lights emitted by a fluor in a liquid scintillator (LS) using a digital camera is described. But the method is limited to the 400-450 nm wavelength region.