We propose a large-scale quantum computer architecture by more easily stabilizing a single large linear ion chain in a very simple trap geometry. By confining ions in an anharmonic linear trap with nearly uniform spacing between ions, we show that high-fidelity quantum gates can be realized in large linear ion crystals under the Doppler temperature based on coupling to a near-continuum of transverse motional modes with simple shaped laser pulses
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Abstract We report on progress towards implement-ing mixed ion species quantum information process-i...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
[[sponsorship]]原子與分子科學研究所[[note]]已出版;有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Gatew...
Trapped-ion systems are among the most promising hardware candidates for large scale quantum computi...
The purpose of this paper is to evaluate the possibility of constructing a large-scale storage-ring-...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
We propose a scheme to implement arbitrary-speed quantum entangling gates on two trapped ions immer...
We show that a large number of ions forming a 2D Coulomb crystal provides an almost ideal system for...
We propose a method to achieve scalable quantum computation based on fast quantum gates on an array ...
Among the numerous types of architecture being explored for quantum computers are systems utilizing ...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Abstract We report on progress towards implement-ing mixed ion species quantum information process-i...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
[[sponsorship]]原子與分子科學研究所[[note]]已出版;有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/Gatew...
Trapped-ion systems are among the most promising hardware candidates for large scale quantum computi...
The purpose of this paper is to evaluate the possibility of constructing a large-scale storage-ring-...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
We propose a scheme to implement arbitrary-speed quantum entangling gates on two trapped ions immer...
We show that a large number of ions forming a 2D Coulomb crystal provides an almost ideal system for...
We propose a method to achieve scalable quantum computation based on fast quantum gates on an array ...
Among the numerous types of architecture being explored for quantum computers are systems utilizing ...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
Large-scale digital quantum simulations require thousands of fundamental entangling gates to constru...
We first consider the basic requirements for a quantum computer, arguing for the attractiveness of n...
Abstract We report on progress towards implement-ing mixed ion species quantum information process-i...