Litcius/Paper detail

Improved limits on solar axions and bosonic dark matter from the CDEX-1B experiment using the profile likelihood ratio method

Y. Wang, Qian Yue, S. K. Liu, K. J. Kang, Y. J. Li, Haipeng An, J. P. Chang, C. H. Cheng, Y. H. Chen, J. P. Cheng, W. H. Dai, Z. Deng, Xiaowan Geng, Hao Gong, Pei-Hong Gu, Xiangbo Guo, H. T. He, Long He, S. M. He, J. Hu, H. X. Huang, T. C. Huang, Jia Li, H. B. Li, H. Li, M. X. Li, J. M. Li, J. Li, X. Li, X. Q. Li, Yan Li, Bin Liao, F. K. Lin, S. T. Lin, Y. D. Liu, Y. Y. Liu, Z. Z. Liu, H. Ma, Q. Y. Nie, J. H. Ning, H. Pan, N. C. Qi, Chen-Kai Qiao, J. Ren, Xichao Ruan, V. Sharma, Z. She, L. Singh, M. K. Singh, Tao Sun, C. J. Tang, W. Y. Tang, Y. Tian, G. F. Wang, L. Wang, Q. Wang, Z. Wang, H. T. Wong, S. Y. Wu, Y. C. Wu, Haoyang Xing, Y. Xu, Tao Xue, Y. L. Yan, L. T. Yang, Yi Nan, C. X. Yu, H. J. Yu, J. F. Yue, X. H. Zeng, M. Zeng, Zhi Zeng, B. T. Zhang, F. S. Zhang, L. Zhang, Z. Y. Zhang, M. G. Zhao, J. F. Zhou, Z. Y. Zhou, J. J. Zhu

2020Physical review. D/Physical review. D.30 citationsDOIOpen Access PDF

Abstract

We present the improved constraints on couplings of solar axions and more generic bosonic dark matter particles using 737.1 kg days of data from the CDEX-1B experiment. The CDEX-1B experiment, located at the China Jinping Underground Laboratory, primarily aims at the direct detection of weakly interacting massive particles using a p-type point-contact germanium detector. We adopt the profile likelihood ratio method for analysis of data in the presence of backgrounds. An energy threshold of 160 eV was achieved, much better than the 475 eV of CDEX-1A with an exposure of 335.6 kg days. This significantly improves the sensitivity for the bosonic dark matter below 0.8 keV among germanium detectors. Limits are also placed on the coupling ${g}_{Ae}<2.48\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}11}$ from Compton, bremsstrahlung, atomic-recombination, and deexcitation channels and ${g}_{AN}^{\mathrm{eff}}\ifmmode\times\else\texttimes\fi{}{g}_{Ae}<4.14\ifmmode\times\else\texttimes\fi{}{10}^{\ensuremath{-}17}$ from a $^{57}\mathrm{Fe}$ M1 transition at 90% confidence level.

Topics & Concepts

PhysicsAxionBremsstrahlungDark matterSensitivity (control systems)Semiconductor detectorGermaniumCoupling (piping)ExcitationDetectorAtomic physicsNuclear physicsParticle physicsOpticsQuantum mechanicsElectronOptoelectronicsEngineeringMechanical engineeringSiliconElectronic engineeringDark Matter and Cosmic PhenomenaParticle physics theoretical and experimental studiesAtomic and Subatomic Physics Research