Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum simulation and access to emergent quantum phenomena such as spin liquids. Spin-1=2 centers are particularly desirable, because they readily manifest coherent quantum fluctuations. Here we introduce a controllable spin-1=2 architecture consisting of titanium atoms on a magnesium oxide surface. We tailor the spin interactions by atomic-precision positioning using a scanning tunneling microscope (STM) and subsequently perform electron spin resonance on individual atoms to drive transitions into and out of quantum eigenstates of the coupled-spin system. Interactions between the atoms are mapped over a range of distances extending from highly anis...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Manipulation of spin states at the single-atom scale underlies spin-based quantum information proces...
We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO using scanning tunneling microscopy...
Manipulation of spin states at the single-atom scale underlies spin-based quantum information proces...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
The interactions of the spins of single atoms with a substrate can be controlled via the moiré latti...
Designing and characterizing the many-body behaviors of quantum materials represents a prominent cha...
Scanning tunneling microscopes (STM) equipped with pulsed electron spin resonance (ESR) have paved a...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Quantum spin networks having engineered geometries and interactions are eagerly pursued for quantum ...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Taking advantage of nuclear spins for electronic structure analysis, magnetic resonance imaging, and...
Manipulation of spin states at the single-atom scale underlies spin-based quantum information proces...
We investigated spin-1/2 hydrogenated titanium (Ti) atoms on MgO using scanning tunneling microscopy...
Manipulation of spin states at the single-atom scale underlies spin-based quantum information proces...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
The interactions of the spins of single atoms with a substrate can be controlled via the moiré latti...
Designing and characterizing the many-body behaviors of quantum materials represents a prominent cha...
Scanning tunneling microscopes (STM) equipped with pulsed electron spin resonance (ESR) have paved a...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...
Shrinking spintronic devices to the nanoscale ultimately requires localized control of individual at...