Photon-noise limited sensitivity in titanium nitride kinetic inductance detectors J Hubmayr, J Beall, D Becker, HM Cho, M Devlin, B Dober, C Groppi, ... Applied Physics Letters 106 (7), 073505, 2015 | 92 | 2015 |
Counting near infrared photons with microwave kinetic inductance detectors W Guo, X Liu, Y Wang, Q Wei, LF Wei, J Hubmayr, J Fowler, J Ullom, ... Applied Physics Letters 110 (21), 212601, 2017 | 68 | 2017 |
Population inversion induced by Landau–Zener transition in a strongly driven rf superconducting quantum interference device G Sun, X Wen, Y Wang, S Cong, J Chen, L Kang, W Xu, Y Yu, S Han, ... Applied Physics Letters 94 (10), 102502, 2009 | 65 | 2009 |
Superconducting micro-resonator arrays with ideal frequency spacing X Liu, W Guo, Y Wang, M Dai, LF Wei, B Dober, CM McKenney, GC Hilton, ... Applied Physics Letters 111 (25), 252601, 2017 | 43 | 2017 |
Optical Demonstration of THz, Dual-Polarization Sensitive Microwave Kinetic Inductance Detectors B Dober, JA Austermann, JA Beall, D Becker, G Che, HM Cho, M Devlin, ... Journal of Low Temperature Physics 184 (1-2), 173-179, 2016 | 39 | 2016 |
Efficient single-photon frequency conversion in the microwave domain using superconducting quantum circuits WZ Jia, YW Wang, Y Liu Physical Review A 96 (5), 053832, 2017 | 27 | 2017 |
Experimental demonstrations of high-Q superconducting coplanar waveguide resonators H Li, Y Wang, L Wei, P Zhou, Q Wei, C Cao, Y Fang, Y Yu, P Wu Chinese Science Bulletin 58 (20), 2413-2417, 2013 | 23 | 2013 |
A tunable coupler for superconducting microwave resonators using a nonlinear kinetic inductance transmission line C Bockstiegel, Y Wang, MR Vissers, LF Wei, S Chaudhuri, J Hubmayr, ... Applied Physics Letters 108 (22), 222604, 2016 | 21 | 2016 |
Quantum interference induced by multiple Landau-Zener transitions in a strongly driven rf-SQUID qubit Y Wang, S Cong, X Wen, C Pan, G Sun, J Chen, L Kang, W Xu, Y Yu, ... Physical Review B 81 (14), 144505, 2010 | 18 | 2010 |
Cryogenic LED pixel-to-frequency mapper for kinetic inductance detector arrays X Liu, W Guo, Y Wang, LF Wei, CM Mckenney, B Dober, T Billings, ... Journal of Applied Physics 122 (3), 034502, 2017 | 16 | 2017 |
Quasi-B-mode generated by high-frequency gravitational waves and corresponding perturbative photon fluxes F Li, H Wen, Z Fang, L Wei, Y Wang, M Zhang Nuclear Physics B 911, 500-516, 2016 | 16 | 2016 |
Photon-induced thermal effects in superconducting coplanar waveguide resonators Y Wang, P Zhou, L Wei, H Li, B Zhang, M Zhang, Q Wei, Y Fang, C Cao Journal of Applied Physics 114 (15), 153109, 2013 | 15 | 2013 |
Measurement of optical constants of TiN and TiN/Ti/TiN multilayer films for microwave kinetic inductance photon-number-resolving detectors M Dai, W Guo, X Liu, M Zhang, Y Wang, LF Wei, GC Hilton, J Hubmayr, ... Journal of Low Temperature Physics 194 (5-6), 361-369, 2019 | 14 | 2019 |
Microwave-induced phase escape in a Josephson tunnel junction S Guozhu, W Yiwen, C Junyu, C Jian, J Zhengming, K Lin, X Weiwei, ... Physical Review B 77 (10), 104531, 2008 | 12 | 2008 |
Network modeling of non-ideal superconducting resonator circuits H Guan, M Dai, Q He, J Hu, P Ouyang, Y Wang, LF Wei, J Gao Superconductor Science and Technology, 2020 | 9 | 2020 |
Photon-detections via probing the switching current shifts of Josephson junctions Y Wang, P Zhou, L Wei, B Zhang, Q Wei, J Zhai, W Xu, C Cao Physica C: Superconductivity and its Applications 515, 49-53, 2015 | 8 | 2015 |
New method for fitting complex resonance curve to study nonlinear superconducting resonators X Dai, X Liu, Q He, Y Chen, Z Mai, Z Shi, W Guo, Y Wang, LF Wei, ... Superconductor Science and Technology 36 (1), 015003, 2022 | 6 | 2022 |
Critical current fluctuation in a microwave-driven Josephson junction N Dong, G Sun, Y Wang, J Cao, Y Yu, J Chen, L Kang, W Xu, S Han, ... Superconductor Science and Technology 20 (11), S441, 2007 | 3 | 2007 |
Nonclassical effects in geodesic motion M Zhang, Y Wang Physical Review D 101 (2), 026005, 2020 | 2 | 2020 |
超导磁通量子比特中的共振隧穿现象 丛山桦, 孙国柱, 王轶文, 曹俊宇, 陈健, 于杨, 吴培亨 稀有金属材料与工程 37 (A04), 489-492, 2008 | 2 | 2008 |