类别
职称
邮件
bsanders@ustc.edu.cn
地址
物质楼B1207-1
个人简介
Our research is focused on using the rich theory of Quantum Mechanics to advance the knowledge of physical phenomena, protocols and their implementation. Current areas of research include machine learning to control nonlinear quantum systems, classical and quantum algorithms for simulation, wavelet theory, collective Rydberg blockade and its application to many body Physics, scalable quantum networks, quantum walks, topological orders, quantum annealing, measures of coherence, quantum channels and their decomposition, quantum cryptography and classical discord.
相关论文
- Double-double electromagnetically induced transparency with amplification. Physical Review A 89, 021802 (2014).
- Coincidence landscapes for three-channel linear optical networks. Physical Review A - Atomic, Molecular, and Optical Physics 89, (2014).
- Quantum resource theory for charge-parity-time inversion. Physical Review A - Atomic, Molecular, and Optical Physics 90, 1-11 (2014).
- Characterizing the rate and coherence of single-electron tunneling between two dangling bonds on the surface of silicon. Physical Review B - Condensed Matter and Materials Physics 89, 1-12 (2014).
- Accessing quantum secrets via local operations and classical communication. Physical Review A 88, 022340 (2013).
- Discrete-time quantum walk with nitrogen-vacancy centers in diamond coupled to a superconducting flux qubit. Physical Review A 88, 022303 (2013).
- Fermionized photons in the ground state of one-dimensional coupled cavities. Physical Review A - Atomic, Molecular, and Optical Physics 88, 1-15 (2013).
- Photon-mediated interactions between distant artificial atoms. Science 342, 1494-1496 (2013).
- Input-output theory for waveguide QED with an ensemble of inhomogeneous atoms. Physical Review A - Atomic, Molecular, and Optical Physics 88, 1-15 (2013).
- Solovay-kitaev decomposition strategy for single-qubit channels. Physical Review Letters 111, 1-5 (2013).