Research Assistant Professor College of Science, Institute for Quanfum Science and Engineering

Interested in superconducting devices and superconducting single photon detectors.

Achieved a photon-number-resolving detector using superconducting microresonator structure.

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superconducting detector, superconducting quantum device

Publications Read More

(1) M. Dai, W. Guo, X. Liu, et al., Measurement of Optical Constants of TiN and TiN/Ti/TiN Multilayer Films for Microwave Kinetic Inductance Photon-Number-Resolving Detectors, Journal of Low Temperature Physics(2018)

(2) X. Liu,W. Guo*, Y. Wang, et al., Superconducting micro-resonator arrays with ideal frequency spacing, Appl. Phys. Lett. 111 252601(2017)

(3) W. Guo, X. Liu, Y. Wang, et al., Counting near infrared photons with microwave kinetic inductance detectors, Appl. Phys. Lett. 110, 212601 (2017)

(4) W. Guo, Y. Wang, L. F. Wei, Controllable photon bunching by atomic superpositions in a driven cavity, Phys. Rev. A 93, 043809 (2016)

(5) W. Guo, F. Dan, L. F. Wei, Experimentally testing Bell’s theorem based on Hardy’s nonlocal ladder proofs, Science China Physics, Mechanics & Astronomy 58 1-5 (2015)

(6) X. Liu, W. Guo, Y. Wang, L. F. Wei, C. M. Mckenney, B. Dober, T. Billings, J. Hubmayr, L. S. Ferreira, M. R. Vissers, and J. Gao, Cryogenic LED pixel-to-frequecny mapper for kinetic inductance detector arrays, Journal of Applied Physics 122,034502 (2017)

(7) Dai-He, F., Mao-Chun, D., Wei-Jie, G., and Lian-Fu, W, Experimentally testing Hardy’s theorem on nonlocality with entangled mixed states, Chin. Phys. B, 26, 040302 (2017)

(8) W Yao, F Dai-He, G Wei-Jie, and W Lian-Fu, et al., Strong violations of locality by testing Bell’s inequality with improved entangled-photon systems, Chin. Phys. B, 24 084203 (2015)

(9) D Fan, W Guo, L Wei, Experimentally testing the Bell inequality violation by optimizing the measurement settings, JOSA B 29, 3429-3433 (2012)

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