Nuclear spins in certain solids couple weakly to their environment, making them attractive candidates for quantum information processing and inertial sensing. When coupled to the spin of an optically-active electron, nuclear spins can be rapidly polarized, controlled and read via lasers and radiofrequency fields. Possessing coherence times of several milliseconds at room temperature, nuclear spins hosted by a nitrogen-vacancy center in diamond are thus intriguing systems to observe how classical physical rotation at quantum timescales affects a quantum system. Unlocking this potential is hampered by precise and inflexible constraints on magnetic field strength and alignment in order to optically induce nuclear polarization, which restricts ...
We report on experiments that quantify the role of a central electronic spin as a relaxation source ...
Dynamical decoupling (DD) is a powerful method for controlling arbitrary open quantum systems. In qu...
Solid-state quantum registers are exceptional for storing quantum information at room temperature wi...
Nuclear spins in solids exhibit long coherence times due to the small nuclear gyromagnetic ratio. Th...
A nitrogen-vacancy (NV) center in a diamond enables the access to an electron spin, which is expecte...
Nuclear spins are harnessed in many important technologies, including the well established fields of...
In recent years, solid-state spin systems have emerged as promising candidates for quantum informati...
This thesis describes a series of experiments on the control of the optical properties of the nitrog...
We employ the electronic spin of a single nitrogen-vacancy (NV) defect in diamond to detect and cont...
The negatively charged nitrogen-vacancy (NV$^-$) center in diamond is a model quantum system for uni...
Coherent control and optical readout of the electron spin of the $^{29}$SiV$^{-}$ center in diamond ...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
Detecting and controlling nuclear spin nano-ensembles is crucial for the further development of nucl...
Most of dynamic nuclear polarization (DNP) has been requiring helium cryogenics and strong magnetic ...
The interaction between a central qubit spin and a surrounding bath of spins is critical to spin-bas...
We report on experiments that quantify the role of a central electronic spin as a relaxation source ...
Dynamical decoupling (DD) is a powerful method for controlling arbitrary open quantum systems. In qu...
Solid-state quantum registers are exceptional for storing quantum information at room temperature wi...
Nuclear spins in solids exhibit long coherence times due to the small nuclear gyromagnetic ratio. Th...
A nitrogen-vacancy (NV) center in a diamond enables the access to an electron spin, which is expecte...
Nuclear spins are harnessed in many important technologies, including the well established fields of...
In recent years, solid-state spin systems have emerged as promising candidates for quantum informati...
This thesis describes a series of experiments on the control of the optical properties of the nitrog...
We employ the electronic spin of a single nitrogen-vacancy (NV) defect in diamond to detect and cont...
The negatively charged nitrogen-vacancy (NV$^-$) center in diamond is a model quantum system for uni...
Coherent control and optical readout of the electron spin of the $^{29}$SiV$^{-}$ center in diamond ...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
Detecting and controlling nuclear spin nano-ensembles is crucial for the further development of nucl...
Most of dynamic nuclear polarization (DNP) has been requiring helium cryogenics and strong magnetic ...
The interaction between a central qubit spin and a surrounding bath of spins is critical to spin-bas...
We report on experiments that quantify the role of a central electronic spin as a relaxation source ...
Dynamical decoupling (DD) is a powerful method for controlling arbitrary open quantum systems. In qu...
Solid-state quantum registers are exceptional for storing quantum information at room temperature wi...