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Semiconductor qubits in practice
In the past decade, semiconducting qubits have made great strides in overcoming
decoherence, improving the prospects for scalability and have become one of the leading …
decoherence, improving the prospects for scalability and have become one of the leading …
Recent advances on applications of NV− magnetometry in condensed matter physics
Measuring magnetic response from spin and current is of fundamental interest in condensed
matter physics. Negatively charged nitrogen-vacancy (NV^−) centers in diamond are …
matter physics. Negatively charged nitrogen-vacancy (NV^−) centers in diamond are …
Imaging viscous flow of the Dirac fluid in graphene
The electron–hole plasma in charge-neutral graphene is predicted to realize a quantum
critical system in which electrical transport features a universal hydrodynamic description …
critical system in which electrical transport features a universal hydrodynamic description …
Imaging phonon-mediated hydrodynamic flow in WTe2
In the presence of interactions, electrons in condensed-matter systems can behave
hydrodynamically, exhibiting phenomena associated with classical fluids, such as vortices …
hydrodynamically, exhibiting phenomena associated with classical fluids, such as vortices …
Current induced hidden states in Josephson junctions
Josephson junctions enable dissipation-less electrical current through metals and insulators
below a critical current. Despite being central to quantum technology based on …
below a critical current. Despite being central to quantum technology based on …
One-dimensional diamond nanostructures: Fabrication, properties and applications
Diamonds exhibit a unique combination of numerous excellent physical and chemical
properties, such as the highest hardness, high Young's modulus, wide bandgap, high carrier …
properties, such as the highest hardness, high Young's modulus, wide bandgap, high carrier …
Nanoscale electric field imaging with an ambient scanning quantum sensor microscope
Nitrogen-vacancy (NV) center in diamond is a promising quantum sensor with remarkably
versatile sensing capabilities. While scanning NV magnetometry is well-established, NV …
versatile sensing capabilities. While scanning NV magnetometry is well-established, NV …
Nanoscale detection of magnon excitations with variable wavevectors through a quantum spin sensor
We report the optical detection of magnons with a broad range of wavevectors in magnetic
insulator Y3Fe5O12 thin films by proximate nitrogen-vacancy (NV) single-spin sensors …
insulator Y3Fe5O12 thin films by proximate nitrogen-vacancy (NV) single-spin sensors …
Toward programmable quantum processors based on spin qubits with mechanically mediated interactions and transport
Solid-state spin qubits are promising candidates for quantum information processing, but
controlled interactions and entanglement in large, multiqubit systems are currently difficult to …
controlled interactions and entanglement in large, multiqubit systems are currently difficult to …
Compact and fully integrated led quantum sensor based on nv centers in diamond
Quantum magnetometry based on optically detected magnetic resonance (ODMR) of
nitrogen vacancy centers in diamond nano or microcrystals is a promising technology for …
nitrogen vacancy centers in diamond nano or microcrystals is a promising technology for …