AbstractThe ability to engineer parallel, programmable operations between desired qubits within a quantum processor is key for building scalable quantum information systems1,2. In most state-of-the-art approaches, qubits interact locally, constrained by the connectivity associated with their fixed spatial layout. Here we demonstrate a quantum processor with dynamic, non-local connectivity, in which entangled qubits are coherently transported in a highly parallel manner across two spatial dimensions, between layers of single- and two-qubit operations. Our approach makes use of neutral atom arrays trapped and transported by optical tweezers; hyperfine states are used for robust quantum information storage, and excitation into Rydberg states i...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
Entanglement lies at the core of quantum algorithms designed to solve problems that are intractable ...
A central challenge for many quantum technologies concerns the generation of large entangled states ...
AbstractThe ability to engineer parallel, programmable operations between desired qubits within a qu...
We investigate how to create entangled states of ultracold atoms trapped in optical lattices by dyna...
We analyze the operation of quantum gates for neutral atoms with qubits that are delocalized in spac...
Abstract Quantum networks providing shared entanglement over a mesh of quantum nodes will revolution...
Arrays of qubits encoded in the ground-state manifold of neutral atoms trapped in optical (or magnet...
© 2019 American Physical Society. We report the implementation of universal two- A nd three-qubit en...
Quantum information applications emerged decades ago, initially introducing a parallel development t...
Quantum information applications emerged decades ago, initially introducing a parallel development t...
We demonstrate the deterministic generation of multipartite entanglement based on scalable methods. ...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
3siAtomic systems, ranging from trapped ions to ultracold and Rydberg atoms, offer unprecedented con...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
Entanglement lies at the core of quantum algorithms designed to solve problems that are intractable ...
A central challenge for many quantum technologies concerns the generation of large entangled states ...
AbstractThe ability to engineer parallel, programmable operations between desired qubits within a qu...
We investigate how to create entangled states of ultracold atoms trapped in optical lattices by dyna...
We analyze the operation of quantum gates for neutral atoms with qubits that are delocalized in spac...
Abstract Quantum networks providing shared entanglement over a mesh of quantum nodes will revolution...
Arrays of qubits encoded in the ground-state manifold of neutral atoms trapped in optical (or magnet...
© 2019 American Physical Society. We report the implementation of universal two- A nd three-qubit en...
Quantum information applications emerged decades ago, initially introducing a parallel development t...
Quantum information applications emerged decades ago, initially introducing a parallel development t...
We demonstrate the deterministic generation of multipartite entanglement based on scalable methods. ...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
3siAtomic systems, ranging from trapped ions to ultracold and Rydberg atoms, offer unprecedented con...
Fast scramblers are dynamical quantum systems that produce many-body entanglement on a timescale tha...
Entanglement lies at the core of quantum algorithms designed to solve problems that are intractable ...
A central challenge for many quantum technologies concerns the generation of large entangled states ...