67 citations · 146 across the 7 of their papers we have counts for
7 papers
Simulation of chiral motion of excitation within the ground-state manifolds of neutral atoms
Hao-Yuan Tang, Xiao-Xuan Li, Jia-Bin You +1
Laser-induced gauge fields in neutral atoms serve as a means of mimicking the effects of a magnetic field, providing researchers with a platform to explore behaviors analogous to t…
Simulation of a feedback-based algorithm for quantum optimization for a realistic neutral atom system with an optimized small-angle controlled-phase gate
S. X. Li, W. L. Mu, J. B. You +1
In contrast to the classical optimization process required by the quantum approximate optimization algorithm, FALQON, a feedback-based algorithm for quantum optimization [A. B. Mag…
Holonomic swap and controlled-swap gates of neutral atoms via selective Rydberg pumping
C. F. Sun, X. Y. Chen, W. L. Mu +3
Holonomic quantum computing offers a promising paradigm for quantum computation due to its error resistance and the ability to perform universal quantum computations. Here, we prop…
Generation of complete graph states in a spin- Heisenberg chain with a globally optimized magnetic field
X. X. Li, D. X. Li, X. Q. Shao
Graph states possess significant practical value in measurement-based quantum computation, with complete graph states that exhibit exceptional performance in quantum metrology. In…
Optimal charging of open spin-chain quantum batteries via homodyne-based feedback control
Y. Yao, X. Q. Shao
We study the problem of charging a dissipative one-dimensional spin-chain quantum battery using local magnetic fields in the presence of spin decay. The introduction of quant…
Single temporal-pulse-modulated parameterized controlled-phase gate for Rydberg atoms
X. X. Li, X. Q. Shao, Weibin Li
We propose an adiabatic protocol for implementing a controlled-phase gate CZ with continuous of neutral atoms through a symmetrical two-photon excitation process via the se…