Absolute calibration of LHAASO WFCTA camera based on LED

Author:

Aharonian F.,An Q.,Axikegu ,Bai L.X.,Bai Y.X.,Bao Y.W.,Bastieri D.,Bi X.J.,Bi Y.J.,Cai H.,Cai J.T.,Cao Zhen,Cao Zhe,Chang J.,Chang J.F.,Chen B.M.,Chen E.S.,Chen J.,Chen Liang,Chen Liang,Chen Long,Chen M.J.,Chen M.L.,Chen Q.H.,Chen S.H.,Chen S.Z.,Chen T.L.,Chen X.L.,Chen Y.,Cheng N.,Cheng Y.D.,Cui S.W.,Cui X.H.,Cui Y.D.,Dai B.Z.,Dai H.L.,Dai Z.G.,Danzengluobu ,della Volpe D.,Piazzoli B. D’Ettorre,Dong X.J.,Duan K.K.,Fan J.H.,Fan Y.Z.,Fan Z.X.,Fang J.,Fang K.,Feng C.F.,Feng L.,Feng S.H.,Feng Y.L.,Fu Y.T.,Gan H.Y.,Gao B.,Gao C.D.,Gao L.Q.,Gao Q.,Gao W.,Ge M.M.,Geng L.S.,Gong G.H.,Gou Q.B.,Gu M.H.,Guo F.L.,Guo J.G.,Guo X.L.,Guo Y.Q.,Guo Y.Y.,Han Y.A.,He H.H.,He H.N.,He J.C.,He S.L.,He X.B.,He Y.,Heller M.,Hor Y.K.,Hou C.,Hu H.B.,Hu S.,Hu S.C.,Hu X.J.,Huang D.H.,Huang Q.L.,Huang W.H.,Huang X.T.,Huang X.Y.,Huang Z.C.,Ji F.,Ji X.L.,Jia H.Y.,Jiang K.,Jiang Z.J.,Jin C.,Ke T.,Kuleshov D.,Levochkin K.,Li B.B.,Li Cong,Li Cheng,Li F.,Li H.B.,Li H.C.,Li H.Y.,Li J.,Li K.,Li W.L.,Li Xin,Li Xin,Li X.R.,Li Y.,Li Y.Z.,Li Zhe,Li Zhuo,Liang E.W.,Liang Y.F.,Lin S.J.,Liu B.,Liu C.,Liu D.,Liu H.,Liu H.D.,Liu J.,Liu J.L.,Liu J.S.,Liu J.Y.,Liu M.Y.,Liu R.Y.,Liu S.M.,Liu W.,Liu Y.,Liu Y.N.,Liu Z.X.,Long W.J.,Lu R.,Lv H.K.,Ma B.Q.,Ma L.L.,Ma X.H.,Mao J.R.,Masood A.,Min Z.,Mitthumsiri W.,Montaruli T.,Nan Y.C.,Pang B.Y.,Pattarakijwanich P.,Pei Z.Y.,Qi M.Y.,Qi Y.Q.,Qiao B.Q.,Qin J.J.,Ruffolo D.,Rulev V.,Sáiz A.,Shao L.,Shchegolev O.,Sheng X.D.,Shi J.Y.,Song H.C.,Stenkin Yu.V.,Stepanov V.,Su Y.,Sun Q.N.,Sun X.N.,Sun Z.B.,Tam P.H.T.,Tang Z.B.,Tian W.W.,Wang B.D.,Wang C.,Wang H.,Wang H.G.,Wang J.C.,Wang J.S.,Wang L.P.,Wang L.Y.,Wang R.N.,Wang W.,Wang W.,Wang X.G.,Wang X.J.,Wang X.Y.,Wang Y.,Wang Y.D.,Wang Y.J.,Wang Y.P.,Wang Z.H.,Wang Z.X.,Wang Zhen,Wang Zheng,Wei D.M.,Wei J.J.,Wei Y.J.,Wen T.,Wu C.Y.,Wu H.R.,Wu S.,Wu W.X.,Wu X.F.,Xi S.Q.,Xia J.,Xia J.J.,Xiang G.M.,Xiao D.X.,Xiao G.,Xiao H.B.,Xin G.G.,Xin Y.L.,Xing Y.,Xu D.L.,Xu R.X.,Xue L.,Yan D.H.,Yan J.Z.,Yang C.W.,Yang F.F.,Yang J.Y.,Yang L.L.,Yang M.J.ORCID,Yang R.Z.,Yang S.B.,Yao Y.H.,Yao Z.G.,Ye Y.M.,Yin L.Q.,Yin N.,You X.H.,You Z.Y.,Yu Y.H.,Yuan Q.,Zeng H.D.,Zeng T.X.,Zeng W.,Zeng Z.K.,Zha M.,Zhai X.X.,Zhang B.B.,Zhang H.M.,Zhang H.Y.,Zhang J.L.,Zhang J.W.,Zhang Lu,Zhang Li,Zhang L.X.,Zhang P.F.,Zhang P.P.,Zhang R.,Zhang S.R.,Zhang S.S.,Zhang X.,Zhang X.P.,Zhang Y.F.,Zhang Y.L.,Zhang Yong,Zhang Yi,Zhao B.,Zhao J.,Zhao L.,Zhao L.Z.,Zhao S.P.,Zheng F.,Zheng Y.,Zhou B.,Zhou H.,Zhou J.N.,Zhou P.,Zhou R.,Zhou X.X.,Zhu C.G.,Zhu F.R.,Zhu H.,Zhu K.J.,Zuo X.

Funder

National Natural Science Foundation of China

Chinese Academy of Sciences

Publisher

Elsevier BV

Subject

Instrumentation,Nuclear and High Energy Physics

Reference15 articles.

1. Introduction to large high altitude air shower observatory (LHAASO);Zhen;Chin. Astron. Astrophys,2019

2. Knee of the cosmic hydrogen and helium spectrum below 1 PeV measured by ARGO-YBJ and a cherenkov telescope of LHAASO;Bartoli;Phys. Rev. D,2015

3. Expected energy spectrum of cosmic ray protons and helium below 4 PeV measured by LHAASO;Yin;Chin. Phys. C,2019

4. A fiber-optic-based calibration system for the high resolution fly’s eye cosmic ray observatory;Girard;Nucl. Instrum. Methods Phys. Res. A,2001

5. The absolute, relative and multi-wavelength calibration of the pierre auger observatory fluorescence detectors;Knapik;Office Entific Tech. Inf. Tech. Rep,2007

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