A simple alternative scheme for implementing quantum gates with a single trapped cold two-level ion beyond the Lamb-Dicke (LD) limit is proposed. Basing on the quantum dynamics for the laser-ion interaction described by a generalized Jaynes-Cummings model, one can introduce two kinds of elementary quantum operations i.e., the simple rotation on the bare atomic state, generated by applying a resonant pulse, and the joint operation on the internal and external degrees of the ion, performed by using an off-resonant pulse. Several typical quantum gates, including Hadamard gate, controlled-Z and controlled-NOT gates $etc.$, can thus be implemented exactly by using these elementary operations. The experimental parameters including the LD paramete...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
We discuss a possible experimental realization of fast quantum gates with high fidelity with ions co...
We propose a simple scheme for implementing quantum logic gates with a string of two-level trapped c...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
Abstract. In this tutorial we review the physical implementation of quantum computing using a system...
Based on the conditional quantum dynamics of laser-ion interaction, we propose an efficient theoreti...
Based on the exact conditional quantum dynamics for a two-ion system, we propose an efficient {\it s...
We propose a scheme for implementation of logical gates in a trapped ion inside a high finesse cavit...
Computations with a future quantum computer will be implemented through the operations by elementary...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...
A single, laser-cooled, trapped %e ’ ion is used to investigate methods of coherent quantum-state sy...
We present a novel method of performing quantum logic gates in trapped ion quantum computers which d...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
We discuss a possible experimental realization of fast quantum gates with high fidelity with ions co...
We propose a simple scheme for implementing quantum logic gates with a string of two-level trapped c...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
Abstract. In this tutorial we review the physical implementation of quantum computing using a system...
Based on the conditional quantum dynamics of laser-ion interaction, we propose an efficient theoreti...
Based on the exact conditional quantum dynamics for a two-ion system, we propose an efficient {\it s...
We propose a scheme for implementation of logical gates in a trapped ion inside a high finesse cavit...
Computations with a future quantum computer will be implemented through the operations by elementary...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...
A single, laser-cooled, trapped %e ’ ion is used to investigate methods of coherent quantum-state sy...
We present a novel method of performing quantum logic gates in trapped ion quantum computers which d...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
Two-qubit logical gates are proposed on the basis of two atoms trapped in a cavity setup and commonl...
We discuss a possible experimental realization of fast quantum gates with high fidelity with ions co...