The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long term goals of experimental quantum information science. Trapped-ion systems are one of the most promising platforms for building a quantum information processor with enough complexity to enable novel computational power, but face serious challenges in scaling up to the necessary numbers of qubits. In this thesis, I present both technical and operational advancements in the control of trapped-ion systems and their juxtaposition with photonic modes used for quantum networking. After reviewing the basic physics behind ion trapping, I then describe in detail a new method of implementing Raman transitions in atomic systems using optical frequency ...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
Increasing the number of qubits that can be controlled in a quantum system represents an essential c...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
Quantum devices are rapidly gaining momentum as a technology that will induce a paradigm shift in co...
Trapped atomic ions are standards for quantum information processing, as all of the fundamental quan...
Trapped atomic ions are standards for quantum information processing, as all of the fundamental quan...
Scaling up controlled quantum systems to involve large numbers of qubits remains one of the outstand...
Long-range transport of quantum information across a network is most readily achieved through the us...
Long-range transport of quantum information across a network is most readily achieved through the us...
Trapped atomic ion systems are currently the most advanced platform for quantum information processi...
Building a quantum computer is one of the outstanding contemporary goals in physics. Trapped-ion qub...
Harnessing quantum mechanics to solve problems intractable on classical computers is one of the fore...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
Increasing the number of qubits that can be controlled in a quantum system represents an essential c...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...
The scaling of controlled quantum systems to large numbers of degrees of freedom is one of the long ...
Quantum devices are rapidly gaining momentum as a technology that will induce a paradigm shift in co...
Trapped atomic ions are standards for quantum information processing, as all of the fundamental quan...
Trapped atomic ions are standards for quantum information processing, as all of the fundamental quan...
Scaling up controlled quantum systems to involve large numbers of qubits remains one of the outstand...
Long-range transport of quantum information across a network is most readily achieved through the us...
Long-range transport of quantum information across a network is most readily achieved through the us...
Trapped atomic ion systems are currently the most advanced platform for quantum information processi...
Building a quantum computer is one of the outstanding contemporary goals in physics. Trapped-ion qub...
Harnessing quantum mechanics to solve problems intractable on classical computers is one of the fore...
Entanglement is a fundamental physical resource at the heart of quantum information theory. This The...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
All of the essential elements for a trapped ion quantum computer have been demonstrated in previous ...
Increasing the number of qubits that can be controlled in a quantum system represents an essential c...
Experiments directed towards the development of a quantum computer based on trapped atomic ions are ...