We propose a scheme for implementation of logical gates in a trapped ion inside a high finesse cavity. The ion is interacting with a (classical) laser field as well as with the (quantized) cavity field. We demonstrate that simply by tuning the ionic internal levels with the frequencies of the fields, it is possible to construct a controlled-NOT gate in a three step procedure, having the ion's internal levels as well as vibrational (motional) levels as qubits. The cavity field is used as an auxiliary qubit and basically remains in the vacuum state. (C) 2002 Elsevier Science B.V. All rights reserved.2994179542342
We demonstrate quantum control techniques for a single trapped ion in a cryogenic, surface-electrode...
Control over physical systems at the quantum level is a goal shared by scientists in fields as diver...
We consider experimental issues relevant to quantum computing, and discuss the best way to achieve t...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
We propose a simple scheme for implementing quantum logic gates with a string of two-level trapped c...
A simple alternative scheme for implementing quantum gates with a single trapped cold two-level ion ...
We present a novel method of performing quantum logic gates in trapped ion quantum computers which d...
Abstract. In this tutorial we review the physical implementation of quantum computing using a system...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
A single, laser-cooled, trapped %e ’ ion is used to investigate methods of coherent quantum-state sy...
This paper discusses the possibility to implement precise quantum gates between cold trapped ions in...
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 demonstrate quantum control techniques for a single trapped ion in a cryogenic, surface-electrode...
Control over physical systems at the quantum level is a goal shared by scientists in fields as diver...
We consider experimental issues relevant to quantum computing, and discuss the best way to achieve t...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
We propose a simple scheme for implementing quantum logic gates with a string of two-level trapped c...
A simple alternative scheme for implementing quantum gates with a single trapped cold two-level ion ...
We present a novel method of performing quantum logic gates in trapped ion quantum computers which d...
Abstract. In this tutorial we review the physical implementation of quantum computing using a system...
A scheme to implement quantum logic gates by manipulating trapped ions through interaction with mono...
A single, laser-cooled, trapped %e ’ ion is used to investigate methods of coherent quantum-state sy...
This paper discusses the possibility to implement precise quantum gates between cold trapped ions in...
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 demonstrate quantum control techniques for a single trapped ion in a cryogenic, surface-electrode...
Control over physical systems at the quantum level is a goal shared by scientists in fields as diver...
We consider experimental issues relevant to quantum computing, and discuss the best way to achieve t...