210 citations · 911 across the 9 of their papers we have counts for
6 papers · 1 filter
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…
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.…
Geometric phase shift in quantum computation using superconducting nanocircuits: nonadiabatic effects
Shi-Liang Zhu, Z. D. Wang
The nonadiabatic geometric quantum computation may be achieved using coupled low-capacitance Josephson juctions. We show that the nonadiabtic effects as well as the adiabatic condi…