Trapped atomic ion systems are currently the most advanced platform for quantum information processing. Their long coherence times, pristine state ini-tialization and detection, and precisely controllable and versatile interactions make them excellent quantum systems for experiments in quantum computation and quan-tum simulation. One of the more promising schemes for quantum computing consists of performing single and multi-qubit quantum gates on qubits in a linear ion crystal. Some of the key challenges of scaling such a system are the individual addressing of arbitrary subsets of ions and controlling the growing complexity of motional mode interactions as the number of qubits increases or when the gates are performed faster. Traditional e...
This thesis describes experimental and theoretical work aimed at development of an ion trap quantum ...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
Trapped ion systems are a strong candidate for quantum information processing due to the long lifeti...
Trapped atomic ion systems are currently the most advanced platform for quantum information processi...
Two-qubit gates are a fundamental constituent of a quantum computer and typically its most challengi...
One of the major problems in building a quantum computer is the development of scalable and robust m...
Scaling up controlled quantum systems to involve large numbers of qubits remains one of the outstand...
This thesis outlines the design and construction of an experimental system for confining and manipul...
Certain classes of quantum many-body systems, including those supporting phenomena like high-Tc supe...
Trapped atomic ions are among leading platforms in quantum information processing with their long co...
Quantum information processing combines information theory with laws of quantum mechanics to provide...
Quantum information processing combines information theory with laws of quantum mechanics to provide...
Thesis (Ph.D.)--University of Washington, 2020Quantum computing promises to revolutionize modern com...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2009.Cataloged from PDF ve...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
This thesis describes experimental and theoretical work aimed at development of an ion trap quantum ...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
Trapped ion systems are a strong candidate for quantum information processing due to the long lifeti...
Trapped atomic ion systems are currently the most advanced platform for quantum information processi...
Two-qubit gates are a fundamental constituent of a quantum computer and typically its most challengi...
One of the major problems in building a quantum computer is the development of scalable and robust m...
Scaling up controlled quantum systems to involve large numbers of qubits remains one of the outstand...
This thesis outlines the design and construction of an experimental system for confining and manipul...
Certain classes of quantum many-body systems, including those supporting phenomena like high-Tc supe...
Trapped atomic ions are among leading platforms in quantum information processing with their long co...
Quantum information processing combines information theory with laws of quantum mechanics to provide...
Quantum information processing combines information theory with laws of quantum mechanics to provide...
Thesis (Ph.D.)--University of Washington, 2020Quantum computing promises to revolutionize modern com...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Physics, 2009.Cataloged from PDF ve...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
This thesis describes experimental and theoretical work aimed at development of an ion trap quantum ...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
Trapped ion systems are a strong candidate for quantum information processing due to the long lifeti...