Among the numerous types of architecture being explored for quantum computers are systems utilizing ion traps, in which quantum bits (qubits) are formed from the electronic states of trapped ions and coupled through the Coulomb interaction. Although the elementary requirements for quantum computation have been demonstrated in this system, there exist theoretical and technical obstacles to scaling up the approach to large numbers of qubits. Therefore, recent efforts have been concentrated on using quantum communication to link a number of small ion-trap quantum systems. Developing the array-based approach, we show how to achieve massively parallel gate operation in a large-scale quantum computer, based on techniques already demonstrated for ...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Abstract. Recent advances in trapped ion technology have rapidly accelerated efforts to construct a ...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Most attempts to produce a scalable quantum information processing platform based on ion traps have ...
Atomic ions trapped in ultra-high vacuum form an especially well-understood and useful physical sy...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We propose a scalable ion trap architecture for universal quantum computation, which is composed of ...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
Trapped ions are a promising platform for universal quantum computing, but are currently limited in ...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
Trapped ions are a promising tool for building a large-scale quantum computer. However, the number o...
A major challenge for quantum computation in ion trap systems is scalable integration of error corre...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Abstract. Recent advances in trapped ion technology have rapidly accelerated efforts to construct a ...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Most attempts to produce a scalable quantum information processing platform based on ion traps have ...
Atomic ions trapped in ultra-high vacuum form an especially well-understood and useful physical sy...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
We propose a scalable ion trap architecture for universal quantum computation, which is composed of ...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
Besides being one of the most pristine qubits, the trapped ion technology provides novel ways to gen...
Trapped ions are a promising platform for universal quantum computing, but are currently limited in ...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
Trapped ions are a promising tool for building a large-scale quantum computer. However, the number o...
A major challenge for quantum computation in ion trap systems is scalable integration of error corre...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Abstract. Recent advances in trapped ion technology have rapidly accelerated efforts to construct a ...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...