Ching-Yao Lai
Princeton University
24 Papers
14 Citations
Ching-Yao Lai is an academic researcher from Princeton University. The author has contributed to research in topics: Daya Bay Reactor Neutrino Experiment & Neutrino oscillation. The author has an hindex of 13, co-authored 23 publications. Previous affiliations of Ching-Yao Lai include Lamont–Doherty Earth Observatory & National Taiwan University.
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Papers
Observation of Electron-Antineutrino Disappearance at Daya Bay
F. P. An,J. Z. Bai,A. B. Balantekin,H. R. Band,D. R. Beavis,W. Beriguete,M. Bishai,S. Blyth,K. Boddy,R. L. Brown,Bei Cai,Guofu Cao,Jun Cao,R. Carr,Wai Ting Chan,J. F. Chang,Y. H. Chang,C. Chasman,H. S. Chen,Huo Yan Chen,S. J. Chen,Shaomin Chen,X. C. Chen,Xiaoyuan Chen,X. S. Chen,Yi Chen,Y. X. Chen,J. J. Cherwinka,Ming Chung Chu,J. Cummings,Z. Y. Deng,Y. Y. Ding,M. V. Diwan,Lixin Dong,E. Draeger,X. F. Du,D. A. Dwyer,W. R. Edwards,S. R. Ely,S. D. Fang,J. Y. Fu,Zai-Wei Fu,L. Q. Ge,V. Ghazikhanian,R. L. Gill,J. Goett,Maxim Gonchar,Guanghua Gong,Honghan Gong,Y. A. Gornushkin,L. Greenler,W. Q. Gu,Min-Xin Guan,Xiaohu Guo,R. W. Hackenburg,R. L. Hahn,S. Hans,Miao He,Q. He,W. S. He,K. M. Heeger,Y. K. Heng,P. Hinrichs,T. H. Ho,Y. K. Hor,Y. B. Hsiung,B. Z. Hu,Tao Hu,H. X. Huang,H. Z. Huang,Pu Huang,X. Huang,X. T. Huang,Patrick Huber,Z. Isvan,D. E. Jaffe,S. Jetter,X. L. Ji,X. P. Ji,H. J. Jiang,W. Q. Jiang,J. B. Jiao,R. A. Johnson,L. Kang,S. H. Kettell,Michael Kramer,Michael Kramer,K. K. Kwan,M. W. Kwok,T. Kwok,Ching-Yao Lai,W. C. Lai,Wing-Hon Lai,K. Lau,L. Lebanowski,Joonho Lee,M. K.P. Lee,Rupert Leitner,J. K. C. Leung,K. Y. Leung,C. A. Lewis,B. Li,F. Li,Guisen Li,Jennifer S. Li,Q. J. Li,S. F. Li,Wei Li,X. B. Li,X. N. Li,Xiang Li,Yufeng Li,Zhibing Li,H. Liang,Jingjing Liang,Chi Lin,Guey-Lin Lin,S. K. Lin,Shengxin Lin,Y. C. Lin,J. J. Ling,J. M. Link,L. S. Littenberg,B. R. Littlejohn,Brent J. Liu,Brent J. Liu,C. Liu,D. W. Liu,Hongjun Liu,Jianglai Liu,Jinmei Liu,Sa Liu,Xuejun Liu,Y. B. Liu,C. Lu,Haoqi Lu,A. Luk,Kam-Biu Luk,Kam-Biu Luk,T. Luo,X. L. Luo,L. H. Ma,Qingming Ma,Xiaoyan Ma,X. Y. Ma,Y. Q. Ma,B. W. Mayes,K. T. McDonald,M. C. McFarlane,R. D. McKeown,R. D. McKeown,Yue Meng,D. Mohapatra,J. E. Morgan,Y. Nakajima,J. Napolitano,Dmitry V. Naumov,Igor Nemchenok,C. R. Newsom,H. Y. Ngai,W. K. Ngai,Y. B. Nie,Zhi Ning,Juan Pedro Ochoa-Ricoux,D. Oh,A. G. Olshevski,A. Pagac,S. J. Patton,C. Pearson,V. Pec,Jen-Chieh Peng,L. E. Piilonen,Lawrence S. Pinsky,Chun S. J. Pun,F. Z. Qi,M. Qi,Xin Qian,N. Raper,Richard Rosero,B. Roskovec,X. C. Ruan,B. Seilhan,B. B. Shao,K. Shih,H. M. Steiner,H. M. Steiner,P. Stoler,G. X. Sun,J. L. Sun,Y. H. Tam,H. K. Tanaka,X. Tang,H. Themann,Y. Torun,S. Trentalange,O. D. Tsai,K. V. Tsang,R. H.M. Tsang,C. E. Tull,B. Viren,Steve Virostek,Vit Vorobel,C. H. Wang,L. S. Wang,L. Y. Wang,L. Z. Wang,Meng Wang,N. Y. Wang,R. G. Wang,Ting-Chi Wang,W. P. Wang,W. P. Wang,Xuan Wang,Y. Wang,Zhenyu Wang,Zhenyu Wang,Z. Wang,D. M. Webber,Yi Wei,Liangjian Wen,D. Wenman,K. Whisnant,C. White,L. H. Whitehead,C. A. Whitten,J. Wilhelmi,T. Wise,H. C. Wong,H. L. H. Wong,J. Wong,E. T. Worcester,F. F. Wu,Q. Wu,Q. Wu,D. M. Xia,S. T. Xiang,Q. Xiao,Zhi-zhong Xing,Guo-Lin Xu,Jianbin Xu,J. L. Xu,W. Xu,Y. Xu,Tian Xue,Changgen Yang,Lei Yang,M. H. Ye,Minfang Yeh,Y. S. Yeh,K. Yip,B. L. Young,Zeyuan Yu,Liang Zhan,Chao Zhang,F. H. Zhang,Jiawen Zhang,Qingmin Zhang,K. Zhang,Q. X. Zhang,S. H. Zhang,Yaolong Zhang,Y. H. Zhang,Y. X. Zhang,Zhijian Zhang,Zhenyu Zhang,Zhiyong Zhang,Jing Zhao,Q. W. Zhao,Yi-Fang Zhao,L. Zheng,W. Zhong,Li Zhou,Zhongyuan Zhou,H. L. Zhuang,Jiaheng Zou +274 more
TL;DR: The Daya Bay Reactor Neutrino Experiment has measured a nonzero value for the neutrino mixing angle θ(13) with a significance of 5.2 standard deviations.
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Improved measurement of electron antineutrino disappearance at Daya Bay
F. P. An,Q. An,J. Z. Bai,A. B. Balantekin,H. R. Band,W. Beriguete,M. Bishai,S. Blyth,R. L. Brown,Guofu Cao,Jun Cao,R. Carr,Wai Ting Chan,J. F. Chang,Y. Chang,C. Chasman,H. S. Chen,Huo Yan Chen,S. J. Chen,Shaomin Chen,X. C. Chen,Xiaoyuan Chen,Xurong Chen,Yi Chen,Yixue Chen,J. J. Cherwinka,Ming Chung Chu,J. P. Cummings,Z. Y. Deng,Y. Y. Ding,M. V. Diwan,E. Draeger,X. F. Du,D. A. Dwyer,W. R. Edwards,W. R. Edwards,S. R. Ely,S. D. Fang,J. Y. Fu,Zai-Wei Fu,L. Q. Ge,R. L. Gill,Maxim Gonchar,Guanghua Gong,Honghan Gong,Y. A. Gornushkin,W. Q. Gu,Min-Xin Guan,Xiaohu Guo,R. W. Hackenburg,R. L. Hahn,S. Hans,Hao Hao,Miao He,Q. He,K. M. Heeger,Y. K. Heng,P. Hinrichs,Y. K. Hor,Y. B. Hsiung,B. Z. Hu,Tao Hu,H. X. Huang,H. Z. Huang,Xingtao Huang,Patrick Huber,Vadim Issakov,Z. Isvan,D. E. Jaffe,S. Jetter,X. L. Ji,X. P. Ji,H. J. Jiang,J. B. Jiao,R. A. Johnson,L. Kang,S. H. Kettell,Michael Kramer,Michael Kramer,K. K. Kwan,M. W. Kwok,T. Kwok,Ching-Yao Lai,W. C. Lai,Wing-Hon Lai,Kwong Lau,L. Lebanowski,Joonho Lee,R. T. Lei,Rupert Leitner,J. K. C. Leung,Kwok Yin Leung,C. A. Lewis,F. Li,Guisen Li,Q. J. Li,Wei Li,X. B. Li,X. N. Li,X. Q. Li,Yufeng Li,Zhibing Li,H. Liang,Changjian Lin,Guey-Lin Lin,S. K. Lin,Y. C. Lin,Y. C. Lin,Y. C. Lin,J. J. Ling,J. M. Link,L. S. Littenberg,B. R. Littlejohn,B. R. Littlejohn,D. W. Liu,Jianglai Liu,Jinmei Liu,Y. B. Liu,C. Lu,Haoqi Lu,A. Luk,Kam Biu Luk,Kam Biu Luk,Qingming Ma,Xubo Ma,X. Y. Ma,Y. Q. Ma,K. T. McDonald,M. C. McFarlane,R. D. McKeown,R. D. McKeown,Yue Meng,D. Mohapatra,Y. Nakajima,Jim Napolitano,Dmitry V. Naumov,Igor Nemchenok,H. Y. Ngai,W. K. Ngai,Y. B. Nie,Zhi Ning,Juan Pedro Ochoa-Ricoux,A. G. Olshevski,S. J. Patton,V. Pec,Jen-Chieh Peng,L. E. Piilonen,Lawrence Pinsky,Chun S. J. Pun,F. Z. Qi,M. Qi,Xin Qian,N. Raper,Jinjuan Ren,Richard Rosero,B. Roskovec,X. C. Ruan,B. B. Shao,K. Shih,H. M. Steiner,H. M. Steiner,G. X. Sun,J. L. Sun,N. Tagg,Y. H. Tam,H. K. Tanaka,X. Tang,H. Themann,Yagmur Torun,S. Trentalange,O. D. Tsai,K. V. Tsang,R. H.M. Tsang,C. E. Tull,Y. C. Tung,B. Viren,Vit Vorobel,Chunjie Wang,L. S. Wang,L. Y. Wang,L. Z. Wang,M. Z. Wang,N. Y. Wang,R. G. Wang,W. P. Wang,Xuan Wang,Yanchu Wang,Zheng Wang,Z. Wang,D. M. Webber,H. Y. Wei,Yi Wei,Liangjian Wen,K. Whisnant,C. White,L. H. Whitehead,Y. Williamson,T. Wise,H. L. H. Wong,H. L. H. Wong,E. T. Worcester,F. F. Wu,Qinglong Wu,J. B. Xi,D. M. Xia,Zhi-zhong Xing,Jianbin Xu,J. L. Xu,Y. Xu,Tian Xue,Changgen Yang,Lin Yang,Meng Ye,Minfang Yeh,Y. S. Yeh,Bing-Lin Young,Zeyuan Yu,Liang Zhan,Chao Zhang,F. H. Zhang,Jiawen Zhang,Qingmin Zhang,S. H. Zhang,Y. C. Zhang,Y. H. Zhang,Y. X. Zhang,Zhijian Zhang,Zhenyu Zhang,Zhiyong Zhang,Jing Zhao,Q. W. Zhao,Yi-Fang Zhao,L. Zheng,W. L. Zhong,Li Zhou,Zhongyuan Zhou,H. L. Zhuang,Jiaheng Zou +237 more
TL;DR: The Daya Bay experiment has improved the measurement of the nuclear mixing parameter by 2.5× the previously reported exposure, and continues to be the most accurate measurement of θ_(13) as discussed by the authors.
Improved Measurement of Electron Antineutrino Disappearance at Daya Bay
F. P. An,Q. An,J. Z. Bai,A. B. Balantekin,H. R. Band,W. Beriguete,M. Bishai,S. L. Blyth,R. L. Brown,Guofu Cao,Jun Cao,R. Carr,Wai Ting Chan,J. F. Chang,Y. Chang,C. Chasman,H. S. Chen,Huo Yan Chen,S. J. Chen,Shaomin Chen,X. C. Chen,Xiaoyuan Chen,X. S. Chen,Yi Chen,Yixue Chen,J. J. Cherwinka,Ming Chung Chu,J. P. Cummings,Z. Y. Deng,Y. Y. Ding,M. V. Diwan,E. Draeger,X. F. Du,D. A. Dwyer,W. R. Edwards,S. R. Ely,S. D. Fang,J. Y. Fu,Zai-Wei Fu,L. Q. Ge,R. L. Gill,Maxim Gonchar,Guanghua Gong,Honghan Gong,Y. A. Gornushkin,W. Q. Gu,Min-Xin Guan,Xiaohu Guo,R. W. Hackenburg,R. L. Hahn,S. Hans,Hao Hao,Miao He,Q. He,K. M. Heeger,Y. K. Heng,P. Hinrichs,Y. K. Hor,Y. B. Hsiung,B. Z. Hu,Tao Hu,H. X. Huang,H. Z. Huang,Xingtao Huang,Patrick Huber,Vadim Issakov,Z. Isvan,D. E. Jaffe,S. Jetter,X. L. Ji,Xiaolu Ji,H. J. Jiang,J. B. Jiao,R. A. Johnson,L. Kang,S. H. Kettell,Michael Kramer,K. K. Kwan,M. W. Kwok,T. Kwok,Ching-Yao Lai,W. C. Lai,Wing-Hon Lai,Kwong Lau,L. Lebanowski,J. Lee,R. T. Lei,Rupert Leitner,J. K. C. Leung,Kwok Yin Leung,C. A. Lewis,F. Li,Guisen Li,Q. J. Li,Wei Li,X. B. Li,X. N. Li,X. Q. Li,Yufeng Li,Zhibing Li,H. Liang,Changjian Lin,Guey-Lin Lin,S. K. Lin,Y. C. Lin,J. J. Ling,J. M. Link,L. S. Littenberg,B. R. Littlejohn,D. W. Liu,Jianglai Liu,Jinmei Liu,Y. B. Liu,C. Lu,Haoqi Lu,A. Luk,Kam Biu Luk,Qingming Ma,X. B. Ma,X. Y. Ma,Y. Q. Ma,K. T. McDonald,M. C. McFarlane,R. D. McKeown,Yue Meng,D. Mohapatra,Y. Nakajima,Jim Napolitano,Dmitry V. Naumov,Igor Nemchenok,H. Y. Ngai,W. K. Ngai,Y. B. Nie,Zhi Ning,Juan Pedro Ochoa-Ricoux,A. G. Olshevski,S. J. Patton,V. Pec,Jen-Chieh Peng,L. E. Piilonen,L. S. Pinsky,Chun S. J. Pun,F. Z. Qi,M. Qi,Xiaohui Qian,N. Raper,Jinjuan Ren,Richard Rosero,B. Roskovec,X. C. Ruan,B. B. Shao,K. Shih,H. M. Steiner,G. X. Sun,J. L. Sun,N. Tagg,Y. H. Tam,H. K. Tanaka,X. Tang,H. Themann,Yagmur Torun,S. Trentalange,O. D. Tsai,K. V. Tsang,R. H.M. Tsang,C. E. Tull,Y. C. Tung,B. Viren,Vit Vorobel,Chunjie Wang,L. S. Wang,L. Y. Wang,Lu Wang,M. Wang,N. Y. Wang,R. G. Wang,W. P. Wang,Xiangyue Wang,Yanchu Wang,Zheng Wang,Z. Wang,D. M. Webber,H. Y. Wei,Yi Wei,Liangjian Wen,K. Whisnant,C. White,L. H. Whitehead,Y. Williamson,T. Wise,H. L. H. Wong,E. T. Worcester,F. F. Wu,Qinglong Wu,J. B. Xi,D. M. Xia,Zhi-zhong Xing,J. L. Xu,Jia Xu,Y. Xu,Tian Xue,Changgen Yang,Lin Yang,Meng Ye,Minfang Yeh,Y. S. Yeh,Bing-Lin Young,Zeyuan Yu,Liang Zhan,Chao Zhang,F. H. Zhang,Jiawen Zhang,Qingmin Zhang,S. H. Zhang,Y. C. Zhang,Y. H. Zhang,Y. X. Zhang,Zhijian Zhang,Z. P. Zhang,Zhiyong Zhang,Jing Zhao,Q. W. Zhao,Yi-Fang Zhao,L. Zheng,W. L. Zhong,Li Zhou,Zhongyuan Zhou,H. L. Zhuang,Jiaheng Zou +228 more
TL;DR: In this article, an improved measurement of the neutrino mixing angle was reported from the Daya Bay Reactor Neutrino Experiment, with a significance of 7.7 standard deviations.
Vulnerability of Antarctica's ice shelves to meltwater-driven fracture.
Ching-Yao Lai,Jonathan Kingslake,Jonathan Kingslake,M. Wearing,Po-Hsuan Cameron Chen,Pierre Gentine,Harold Li,J. Spergel,J. Spergel,J. Melchior van Wessem +9 more
TL;DR: The ice shelves in Antarctica that may be prone to hydrofracturing under further atmospheric warming are identified and a stability diagram of fractures based on linear elastic fracture mechanics to predict where basal and dry surface fractures form under current stress conditions is developed.
A side-by-side comparison of Daya Bay antineutrino detectors
F. P. An,Q. An,J. Z. Bai,A. B. Balantekin,H. R. Band,W. Beriguete,M. Bishai,S. Blyth,R. L. Brown,Guofu Cao,Jun Cao,R. Carr,J. F. Chang,Y. H. Chang,C. Chasman,H. S. Chen,S. J. Chen,Shaomin Chen,X. C. Chen,Xiaoyuan Chen,Xurong Chen,Yi Chen,J. J. Cherwinka,Ming Chung Chu,J. P. Cummings,Z. Y. Deng,Y. Y. Ding,M. V. Diwan,E. Draeger,X. F. Du,D. A. Dwyer,W. R. Edwards,S. R. Ely,S. D. Fang,J. Y. Fu,Zai-Wei Fu,Liangquan Ge,R. L. Gill,Maxim Gonchar,Guanghua Gong,Honghan Gong,Y. A. Gornushkin,L. Greenler,W. Q. Gu,Min-Xin Guan,Xiaohu Guo,R. W. Hackenburg,R. L. Hahn,S. Hans,H. F. Hao,Miao He,Q. He,W. S. He,K. M. Heeger,Y. K. Heng,P. Hinrichs,T. H. Ho,Y. K. Hor,Y. B. Hsiung,B. Z. Hu,Tao Hu,H. X. Huang,H. Z. Huang,Pu Huang,X. Huang,X. T. Huang,Patrick Huber,D. E. Jaffe,S. Jetter,X. L. Ji,X. P. Ji,H. J. Jiang,W. Q. Jiang,J. B. Jiao,R. A. Johnson,L. Kang,S. H. Kettell,Michael Kramer,Michael Kramer,K. K. Kwan,M. W. Kwok,T. Kwok,Ching-Yao Lai,W. C. Lai,Wing-Hon Lai,K. Lau,L. Lebanowski,M. K.P. Lee,Rupert Leitner,J. K. C. Leung,Kwok Yin Leung,C. A. Lewis,F. Li,Guisen Li,Jun Li,Q. J. Li,S. F. Li,Wei Li,X. B. Li,Xiao-yan Li,X. Q. Li,Yufeng Li,Z. B. Li,H. Liang,Chi Lin,Guey-Lin Lin,S. K. Lin,Shengxin Lin,Y. C. Lin,Y. C. Lin,Y. C. Lin,J. J. Ling,J. M. Link,L. S. Littenberg,B. R. Littlejohn,Brent J. Liu,Brent J. Liu,D. W. Liu,Jianglai Liu,Jinmei Liu,Sa Liu,Xuejun Liu,Y. B. Liu,C. Lu,Haoqi Lu,A. Luk,Kam-Biu Luk,Kam-Biu Luk,X. L. Luo,L. H. Ma,Qingming Ma,X. Y. Ma,Y. Q. Ma,B. W. Mayes,Kirk T. McDonald,M. C. McFarlane,R. D. McKeown,R. D. McKeown,Yue Meng,D. Mohapatra,Y. Nakajima,J. Napolitano,Dmitry V. Naumov,Igor Nemchenok,C. R. Newsom,H. Y. Ngai,W. K. Ngai,Y. B. Nie,Zhi Ning,Juan Pedro Ochoa-Ricoux,A. G. Olshevski,A. Pagac,S. J. Patton,V. Pec,Jen-Chieh Peng,L. E. Piilonen,Lawrence Pinsky,Chun S. J. Pun,F. Z. Qi,M. Qi,Xin Qian,Richard Rosero,B. Roskovec,X. C. Ruan,B. Seilhan,B. B. Shao,K. Shih,H. M. Steiner,H. M. Steiner,P. Stoler,G. X. Sun,J. L. Sun,Y. H. Sun,H. K. Tanaka,X. Tang,Yagmur Torun,S. Trentalange,O. D. Tsai,K. V. Tsang,R. H.M. Tsang,C. E. Tull,B. Viren,Vit Vorobel,C. H. Wang,L. S. Wang,L. Y. Wang,M. Z. Wang,N. Y. Wang,R. G. Wang,Wei Wang,Xuan Wang,Y. Wang,Zhiyuan Wang,Zhiyuan Wang,Z. Wang,D. M. Webber,Yi Wei,Liangjian Wen,D. Wenman,K. Whisnant,Christopher G. White,L. H. Whitehead,J. Wilhelmi,T. Wise,H. L. H. Wong,J. Wong,F. F. Wu,Q. Wu,Q. Wu,J. B. Xi,D. M. Xia,Q. Xiao,Zhi-zhong Xing,Guo-Lin Xu,Jianbin Xu,J. L. Xu,Y. Xu,Tian Xue,Changgen Yang,Lin Yang,M. H. Ye,Minfang Yeh,Y. S. Yeh,Bing-Lin Young,Zeyuan Yu,Liang Zhan,Chao Zhang,F. H. Zhang,Jiawen Zhang,Qingmin Zhang,S. H. Zhang,Yaolong Zhang,Y. H. Zhang,Y. X. Zhang,Zhijian Zhang,Zhenyu Zhang,Zhiyong Zhang,Haifeng Zhao,Jing Zhao,Q. W. Zhao,Yaolin Zhao,L. Zheng,W. L. Zhong,Li Zhou,Y. Zhou,Zhongyuan Zhou,H. L. Zhuang,Jiaheng Zou +247 more
TL;DR: The Daya Bay Reactor Neutrino Experiment is designed to determine precisely the neutrino mixing angle θ_(13) with a sensitivity better than 0.01 at the 90% confidence level as mentioned in this paper.