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Quantum control over single spins in diamond
Nitrogen-vacancy (NV) centers in diamond have recently emerged as a unique platform for
fundamental studies in quantum information and nanoscience. The special properties of …
fundamental studies in quantum information and nanoscience. The special properties of …
Single-molecule scale magnetic resonance spectroscopy using quantum diamond sensors
Single-molecule technology stands as a powerful tool, enabling the characterization of
intricate structural and dynamic information that would otherwise remain concealed within …
intricate structural and dynamic information that would otherwise remain concealed within …
Nuclear spin polarization and control in hexagonal boron nitride
Electron spins in van der Waals materials are playing a crucial role in recent advances in
condensed-matter physics and spintronics. However, nuclear spins in van der Waals …
condensed-matter physics and spintronics. However, nuclear spins in van der Waals …
Nuclear spin-wave quantum register for a solid-state qubit
Solid-state nuclear spins surrounding individual, optically addressable qubits, are a crucial
resource for quantum networks,,–, computation,,,–and simulation. Although hosts with …
resource for quantum networks,,–, computation,,,–and simulation. Although hosts with …
Diamond NV centers for quantum computing and quantum networks
The exotic features of quantum mechanics have the potential to revolutionize information
technologies. Using superposition and entanglement, a quantum processor could efficiently …
technologies. Using superposition and entanglement, a quantum processor could efficiently …
Clock transition by continuous dynamical decoupling of a three-level system
We present a novel continuous dynamical decoupling scheme for the construction of a
robust qubit in a three-level system. By means of a clock transition adjustment, we first show …
robust qubit in a three-level system. By means of a clock transition adjustment, we first show …
Optimal and variational multiparameter quantum metrology and vector-field sensing
We study multiparameter sensing of two-dimensional (2D) and three-dimensional (3D)
vector fields within the Bayesian framework for SU (2) quantum interferometry. We establish …
vector fields within the Bayesian framework for SU (2) quantum interferometry. We establish …
Decoherence-protected quantum gates for a hybrid solid-state spin register
Protecting the dynamics of coupled quantum systems from decoherence by the environment
is a key challenge for solid-state quantum information processing,. An idle quantum bit …
is a key challenge for solid-state quantum information processing,. An idle quantum bit …
Detecting and polarizing nuclear spins with double resonance on a single electron spin
We report the detection and polarization of nuclear spins in diamond at room temperature by
using a single nitrogen-vacancy (NV) center. We use Hartmann-Hahn double resonance to …
using a single nitrogen-vacancy (NV) center. We use Hartmann-Hahn double resonance to …
Ultrathin β-tellurium layers grown on highly oriented pyrolytic graphite by molecular-beam epitaxy
J Chen, Y Dai, Y Ma, X Dai, W Ho, M **e - Nanoscale, 2017 - pubs.rsc.org
Monolayer tellurium (Te) or tellurene has been suggested by a recent theory as a new two-
dimensional (2D) system with great electronic and optoelectronic promises. Here we present …
dimensional (2D) system with great electronic and optoelectronic promises. Here we present …