The interaction between a central qubit spin and a surrounding bath of spins is critical to spin-based solid-state quantum sensing and quantum information processing. Spin-bath interactions are typically strongly anisotropic, and rapid physical rotation has long been used in solid-state nuclear magnetic resonance to simulate motional averaging of anisotropic interactions, such as dipolar coupling between nuclear spins. Here, we show that the interaction between electron spins of nitrogen-vacancy centers and a bath of C13 nuclear spins in a diamond rotated at up to 300 000 rpm introduces decoherence into the system via frequency modulation of the nuclear spin Larmor precession. The presence of an off-axis magnetic field necessary for averagi...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We report sensitive detection of the nuclear quadrupolar interaction of the N14 nuclear spin of the ...
We probe dephasing mechanisms within a quantum network node consisting of a single nitrogen-vacancy ...
We use field-cycling-assisted dynamic nuclear polarization and continuous radio-frequency (RF) drivi...
Nuclear spins in certain solids couple weakly to their environment, making them attractive candidate...
We employ the electronic spin of a single nitrogen-vacancy (NV) defect in diamond to detect and cont...
The theory of angular momentum connects physical rotations and quantum spins together at a fundament...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
Nuclear spins are harnessed in many important technologies, including the well established fields of...
We have measured the donor-bound electron spin dynamics in cubic GaN by time-resolved Kerr rotation ...
Optically pumped color centers in semiconductor powders can potentially induce high levels of nuclea...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...
We experimentally demonstrate that the decoherence of a spin by a spin bath can be completely elimin...
Multi-qubit systems are crucial for the advancement and application of quantum science. Such systems...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We report sensitive detection of the nuclear quadrupolar interaction of the N14 nuclear spin of the ...
We probe dephasing mechanisms within a quantum network node consisting of a single nitrogen-vacancy ...
We use field-cycling-assisted dynamic nuclear polarization and continuous radio-frequency (RF) drivi...
Nuclear spins in certain solids couple weakly to their environment, making them attractive candidate...
We employ the electronic spin of a single nitrogen-vacancy (NV) defect in diamond to detect and cont...
The theory of angular momentum connects physical rotations and quantum spins together at a fundament...
We experimentally isolate, characterize, and coherently control up to six individual nuclear spins t...
Dynamic nuclear polarization, which transfers the spin polarization of electrons to nuclei, is routi...
Nuclear spins are harnessed in many important technologies, including the well established fields of...
We have measured the donor-bound electron spin dynamics in cubic GaN by time-resolved Kerr rotation ...
Optically pumped color centers in semiconductor powders can potentially induce high levels of nuclea...
The central-spin problem is a widely studied model of quantum decoherence. Dynamic nuclear polarizat...
We experimentally demonstrate that the decoherence of a spin by a spin bath can be completely elimin...
Multi-qubit systems are crucial for the advancement and application of quantum science. Such systems...
We study the dynamics of an electron spin in a graphene quantum dot, which is interacting with a bat...
We report sensitive detection of the nuclear quadrupolar interaction of the N14 nuclear spin of the ...
We probe dephasing mechanisms within a quantum network node consisting of a single nitrogen-vacancy ...