210 citations · 911 across the 9 of their papers we have counts for
7 papers
Large Scale Quantum Computation in an Anharmonic Linear Ion Trap
G. -D. Lin, S. -L. Zhu, R. Islam +5
We propose a large-scale quantum computer architecture by stabilizing a single large linear ion chain in a very simple trap geometry. By confining ions in an anharmonic linear trap…
Implementing topological quantum manipulation with superconducting circuits
Zheng-Yuan Xue, Shi-Liang Zhu, J. Q. You +1
A two-component fermion model with conventional two-body interactions was recently shown to have anyonic excitations. We here propose a scheme to physically implement this model by…
Delocalization of relativistic Dirac particles in disordered one-dimensional systems and its implementation with cold atoms
Shi-Liang Zhu, Dan-Wei Zhang, Z. D. Wang
We study theoretically the localization of relativistic particles in disordered one-dimensional chains. It is found that the relativistic particles tend to dislocation in compariso…
Quantum computation in decoherence-free subspace with superconducting devices
Zheng-Yuan Xue, Shi-Liang Zhu, Z. D. Wang
We propose a scheme to implement quantum computation in decoherence-free subspace with superconducting devices inside a cavity by unconventional geometric manipulation. Universal s…
Trapped ion quantum computation with transverse phonon modes
Shi-Liang Zhu, C. Monroe, L. -M. Duan
We propose a scheme to implement quantum gates on any pair of trapped ions immersed in a large linear crystal, using interaction mediated by the transverse phonon modes. Compared w…
Unconventional geometric quantum computation
S. -L. Zhu, Z. D. Wang
We propose a new class of unconventional geometric gates involving nonzero dynamic phases, and elucidate that geometric quantum computation can be implemented by using these gates.…