We show that a large number of ions forming a 2D Coulomb crystal provides an almost ideal system for scalable quantum computation and quantum simulation. In particular, the coupling of the internal states to the motion of the ions transverse to the crystal plane allows one to implement two-qubit quantum gates. We analyze in detail the decoherence induced by anharmonic couplings, and show that very high gate fidelities can be achieved with current experimental setups
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
Quantum information processing with trapped ions is a mature field in which single and multiple qub...
A precisely controlled quantum system may reveal a fundamental understanding of another, less access...
A precisely controlled quantum system may reveal a fundamental understanding of another, less access...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Generating quantum entang...
We propose loading trapped ions into microtraps formed by an optical lattice. For harmonic microtrap...
Direct experimental access to some of the most intriguing quantum phenomena is not granted due to th...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
We propose the use of two-dimensional Penning trap arrays as a scalable platform for quantum simulat...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
Trapped ion systems have become one of the important platforms for quantum information processing (Q...
We demonstrate the preparation and coherent control of the angular momentum state of a two-ion cryst...
We demonstrate the preparation and coherent control of the angular momentum state of a two-ion cryst...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
Quantum information processing with trapped ions is a mature field in which single and multiple qub...
A precisely controlled quantum system may reveal a fundamental understanding of another, less access...
A precisely controlled quantum system may reveal a fundamental understanding of another, less access...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
© 2020, The Author(s), under exclusive licence to Springer Nature Limited. Generating quantum entang...
We propose loading trapped ions into microtraps formed by an optical lattice. For harmonic microtrap...
Direct experimental access to some of the most intriguing quantum phenomena is not granted due to th...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
We propose the use of two-dimensional Penning trap arrays as a scalable platform for quantum simulat...
Ion trap is one of the most promising candidates for quantum computing. High-fidelity gates have bee...
Trapped ion systems have become one of the important platforms for quantum information processing (Q...
We demonstrate the preparation and coherent control of the angular momentum state of a two-ion cryst...
We demonstrate the preparation and coherent control of the angular momentum state of a two-ion cryst...
We propose a large-scale quantum computer architecture by more easily stabilizing a single large lin...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
Quantum information processing with trapped ions is a mature field in which single and multiple qub...