Dark matter direct search sensitivity of the PandaX-4T experiment
暂无分享,去创建一个
Pengwei Xie | Andi Tan | Ning Zhou | Binbin Yan | Hongguang Zhang | Tao Zhang | Jinhua Ning | Jingkai Xia | Zhou Wang | Yong Yang | Jianfeng Yue | Di Huang | Shengming He | Anqing Wang | Xiangdong Ji | Chunxu Yu | Xuyuan Guo | Xingtao Huang | Binbin Dong | Shiyong Wu | M. Xiao | Tao Zhang | Yong Yang | Siguang Wang | X. Huang | Shiyong Wu | X. Ji | Yunhua Chen | X. Cui | B. Dong | K. Giboni | Yugang Ma | Chun-xu Yu | Y. Mao | Jianglai Liu | Meng Wang | K. Ni | P. Ji | L. Gu | Zhifan Guo | F. Giuliani | Xuming Wang | Yu-Gang Ma | Xun Chen | YaJun Mao | Meng Wang | Li Zhao | K. Han | A. Tan | Xun Chen | D. Fang | C. Fu | Xuyuan Guo | Y. Ju | Shaoli Li | Huaxuan Liu | X. Ren | Fangxia Shi | Qiuhong Wang | Zhou Wang | P. Xie | J. Yue | Hongguang Zhang | Li Zhao | N. Zhou | Xiaopeng Zhou | Jianglai Liu | Jijun Yang | Ke Han | Hongwei Wang | Mengjiao Xiao | Xiangyi Cui | Yunhua Chen | Changbo Fu | Karl Giboni | Franco Giuliani | Yonglin Ju | Huaxuan Liu | Xiangxiang Ren | Fang Shi | Qiuhong Wang | Siguang Wang | Xuming Wang | Xiaopeng Zhou | Zhou Huang | Jingkai Xia | Heng Lin | Wei Chen | Abdusalam Abdukerim | De-Qing Fang | Linhui Gu | Zhifan Guo | Changda He | Zhou Huang | Peng Ji | S. Li | Yao Li | Kaixiang Ni | Cheng Wang | Xiuli Wang | Mengmeng Wu | Jijun Yang | Jumin Yuan | D. Zhang | Qibin Zheng | Jifang Zhou | Dan Zhang | A. Abdukerim | Wei Chen | C. He | D. Huang | Shengming He | Yao Li | Heng Lin | J. Ning | Cheng Wang | Xiuli Wang | Jifang Zhou | Anqing Wang | Mengmeng Wu | Jumin Yuan | Q. Zheng | B. Yan | J. Yuan | Hong-Wei Wang | Jing-Kai Xia | N. Zhou
[1] C. A. Oxborrow,et al. Planck2015 results , 2015, Astronomy & Astrophysics.
[2] X. Ji,et al. Current status of direct dark matter detection experiments , 2017, Nature Physics.
[3] V. M. Ghete,et al. A search for a doubly-charged Higgs boson in pp collisions at $\sqrt{s} = 7 \ \mbox{TeV}$ , 2012, 1207.2666.
[4] T. Hansl-Kozanecka,et al. Commissioning of the ATLAS Muon Spectrometer with Cosmic Rays , 2010, 1006.4384.
[5] Gorjan Alagic,et al. #p , 2019, Quantum information & computation.
[6] E Aprile,et al. First Dark Matter Search Results from the XENON1T Experiment. , 2017, Physical review letters.
[7] D. M. Asner,et al. Improved dark matter search results from PICO-2L Run 2 , 2016, 1601.03729.
[8] Ericka Stricklin-Parker,et al. Ann , 2005 .
[9] Sandra M. Faber,et al. Masses and Mass-To-Light Ratios of Galaxies , 1979 .
[10] Stephan Aune,et al. PandaX-III: Searching for neutrinoless double beta decay with high pressure 136Xe gas time projection chambers , 2016, 1610.08883.
[11] S. Klein,et al. Observation of coherent elastic neutrino-nucleus scattering , 2017, Science.
[12] L. Pandola,et al. LOW RADIOACTIVITY TECHNIQUES 2013 (LRT 2013): Proceedings of the IV International Workshop in Low Radioactivity Techniques , 2013 .
[13] Heiko Geenen,et al. IceCube Collaboration , 2005 .
[14] John Dubinski,et al. Dynamical Blueprints for Galaxies , 2008, 0801.3414.
[15] F. V. Massoli,et al. XENON100 dark matter results from a combination of 477 live days , 2016, 1609.06154.
[16] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[17] A. Read. Presentation of search results: the CLs technique , 2002 .
[18] F. Iachello,et al. Phase space factors for double-$\beta$ decay , 2012, 1209.5722.
[19] R. Webb,et al. Results on the Spin-Dependent Scattering of Weakly Interacting Massive Particles on Nucleons from the Run 3 Data of the LUX Experiment. , 2016, Physical review letters.
[20] J. Caudron,et al. Search for dark matter and other new phenomena in events with an energetic jet and large missing transverse momentum using the ATLAS detector , 2017, Journal of High Energy Physics.
[21] M. Xiao,et al. Spin-Dependent Weakly-Interacting-Massive-Particle-Nucleon Cross Section Limits from First Data of PandaX-II Experiment. , 2016, Physical review letters.
[22] S. Kim,et al. Search for neutrinos from annihilation of captured low-mass dark matter particles in the sun by super-kamiokande. , 2015, Physical review letters.
[23] G. Bertone,et al. Particle dark matter: Evidence, candidates and constraints , 2004, hep-ph/0404175.
[24] L. Young,et al. An atom trap system for practical 81Kr dating , 2004 .
[25] Joel R. Primack,et al. Formation of galaxies and large-scale structure with cold dark matter , 1984, Nature.
[26] P. O. Hulth,et al. Improved limits on dark matter annihilation in the Sun with the 79-string IceCube detector and implications for supersymmetry , 2016, 1601.00653.
[27] M. Xiao,et al. Dark Matter Results from 54-Ton-Day Exposure of PandaX-II Experiment. , 2017, Physical review letters.
[28] S. Shaw. Dark matter searches with the LUX and LZ experiments , 2016 .
[29] M. Weber,et al. Physics reach of the XENON1T dark matter experiment. , 2015, 1512.07501.
[30] O. Ponkratenko,et al. Event generator DECAY4 for simulating double-beta processes and decays of radioactive nuclei , 2000, nucl-ex/0104018.
[31] S Fiorucci,et al. Results from a Search for Dark Matter in the Complete LUX Exposure. , 2016, Physical review letters.
[32] Pengwei Xie,et al. Dark Matter Results from First 98.7 Days of Data from the PandaX-II Experiment. , 2016, Physical review letters.
[33] Yi Wang,et al. Search for new physics in final states with an energetic jet or a hadronically decaying W or Z boson and transverse momentum imbalance at √s=13 TeV , 2018 .
[34] A. Dell'Acqua,et al. Geant4 - A simulation toolkit , 2003 .