CYGNO a CYGNUs Collaboration 1 m3 Module with Optical Readout for Directional Dark Matter Search

G. Mazzitelli,E. Baracchini,R. Bedogni,F. Bellini, L. Benussi, S. Bianco, L. Bignell,G. Cavoto,E. Di Marco, C. Eldridge, A. Ezeribe, R. Gargana,T. Gamble,R. Gregorio,G. Lane, D. Loomba, W. Lynch, G. Maccarrone,M. Marafini,A. Messina,A. Mills, K. Miuchi, F. Petrucci, D. Piccolo, D. Pinci,N. Phan, F. Renga, N. Spooner, T. Thorpe,S. Tomassini, S. Vahsen

2018 IEEE Nuclear Science Symposium and Medical Imaging Conference Proceedings (NSS/MIC)(2018)

引用 2|浏览6
暂无评分
摘要
The design of the project named CYGNO is presented. CYGNO is a new proposal supported by INFN, the Italian National Institute for Nuclear Physics, within CYGNUs proto-collaboration (CYGNUS-TPC) that aims to realize a distributed observatory in underground laboratories for directional Dark Matter (DM) search and the identification of the coherent neutrino scattering (CNS) from the Sun. CYGNO is one of the first prototypes in the road map to 100-1000 m 3 of CYGNUs and will be located at the National Laboratory of Gran Sasso (LNGS), in Italy, aiming to make significant advances in the technology of single phase gas-only time projection chambers (TPC) for the application to the detection of rare scattering events. In particular it will focus on a read-out technique based on Micro Pattern Gas Detector (MPGD) amplification of the ionization and on the visible light collection with a sub-mm position resolution sCMOS (scientific COMS) camera. This type of readout - in conjunction with a fast light detection - will allow on one hand to reconstruct 3D direction of the tracks, offering accurate sensitivity to the source directionality and, on the other hand, a high particle identification capability very useful to distinguish nuclear recoils.
更多
查看译文
关键词
MPGD,GEM,Dark Matter,Optical Readout
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要