Diamond based quantum technology is a fast emerging field with both scientific and technological importance. With the growing knowledge and experience concerning diamond based quantum systems comes an increased demand for performance. Quantum optimal control (QOC) provides a direct solution to a number of existing challenges as well as a basis for proposed future applications. Together with a swift review of QOC strategies, quantum sensing, and other relevant quantum technology applications of nitrogen-vacancy (NV) centers in diamond, the authors give the necessary background to summarize recent advancements in the field of QOC assisted quantum applications with NV centers in diamon
The NV center in diamond is well known as quantum sensor and qubit working at room temperature. In t...
Emerging quantum technologies require precise control over quantum systems of increasing complexity....
The nitrogen-vacancy (NV) center in diamond is a solid-state defect qubit with favorable coherence t...
Quantum systems can be exquisite sensors thanks to their sensitivity to external perturbations. This...
The exotic features of quantum mechanics have the potential to revolutionize information technologie...
The laws of quantum mechanics govern the ultimate precision limits of sensing. Novel sensors that us...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. Quantum sensors ta...
This thesis describes a series of experiments on the control of the optical properties of the nitrog...
Quantum technology is advancing from the lab into the commercial world. However, this path from scie...
A quantum network is the essential resource for distributed quantum computation and the enabling tec...
Engineering desired operations on qubits subjected to the deleterious effects of their environment i...
Single qubit in solid-state materials recently emerges as a versatile platform for quantum informati...
Solid-state technologies for quantum mechanical application require delicate materials that can oper...
Color centers in diamond, and in particular the nitrogen-vacancy center (NV center), have proven pro...
The NV center in diamond is well known as quantum sensor and qubit working at room temperature. In t...
Emerging quantum technologies require precise control over quantum systems of increasing complexity....
The nitrogen-vacancy (NV) center in diamond is a solid-state defect qubit with favorable coherence t...
Quantum systems can be exquisite sensors thanks to their sensitivity to external perturbations. This...
The exotic features of quantum mechanics have the potential to revolutionize information technologie...
The laws of quantum mechanics govern the ultimate precision limits of sensing. Novel sensors that us...
The nitrogen-vacancy (NV) center in diamond has been integral to the advancement of quantum technolo...
© COPYRIGHT SPIE. Downloading of the abstract is permitted for personal use only. Quantum sensors ta...
This thesis describes a series of experiments on the control of the optical properties of the nitrog...
Quantum technology is advancing from the lab into the commercial world. However, this path from scie...
A quantum network is the essential resource for distributed quantum computation and the enabling tec...
Engineering desired operations on qubits subjected to the deleterious effects of their environment i...
Single qubit in solid-state materials recently emerges as a versatile platform for quantum informati...
Solid-state technologies for quantum mechanical application require delicate materials that can oper...
Color centers in diamond, and in particular the nitrogen-vacancy center (NV center), have proven pro...
The NV center in diamond is well known as quantum sensor and qubit working at room temperature. In t...
Emerging quantum technologies require precise control over quantum systems of increasing complexity....
The nitrogen-vacancy (NV) center in diamond is a solid-state defect qubit with favorable coherence t...