Electron spin qubits in molecular systems offer high reproducibility and the ability to self-assemble into larger architectures. However, interactions between neighboring qubits are "always on," and although the electron spin coherence times can be several hundred microseconds, these are still much shorter than typical times for nuclear spins. Here we implement an electron-nuclear hybrid scheme which uses coherent transfer between electron and nuclear spin degrees of freedom in order to both effectively turn on or off interqubit coupling mediated by dipolar interactions and benefit from the long nuclear spin decoherence times (T-2n). We transfer qubit states between the electron and N-15 nuclear spin in N-15@C-60 with a two-way process fide...
Hybrid quantum registers, such as electron-nuclear spin systems, have emerged as promising hard- war...
Pulsed magnetic resonance allows the quantum state of electronic and nuclear spins to be controlled ...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Electron spin qubits in molecular systems offer high reproducibility and the ability to self-assembl...
The research is supported by the NSF through the Princeton MRSEC under Grant No. DMR-0213706 and the...
Electron spin qubits in molecular systems offer high reproducibility and the ability to self-assembl...
The transfer of information between different physical forms is a central theme in communication and...
Single electron spins coupled to multiple nuclear spins provide promising multi-qubit registers for ...
Nuclear spins have been proposed for the embodiment of quantum information and yielded the most comp...
The transfer of information between different physical forms - for example processing entities and m...
There is a growing interest in hybrid solid-state quantum systems where nuclear spins, interfaced to...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Individually addressed Er3+ ions in solid-state hosts are promising resources for quantum repeaters,...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
A switchable interaction between pairs of highly coherent qubits is a crucial ingredient for the phy...
Hybrid quantum registers, such as electron-nuclear spin systems, have emerged as promising hard- war...
Pulsed magnetic resonance allows the quantum state of electronic and nuclear spins to be controlled ...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...
Electron spin qubits in molecular systems offer high reproducibility and the ability to self-assembl...
The research is supported by the NSF through the Princeton MRSEC under Grant No. DMR-0213706 and the...
Electron spin qubits in molecular systems offer high reproducibility and the ability to self-assembl...
The transfer of information between different physical forms is a central theme in communication and...
Single electron spins coupled to multiple nuclear spins provide promising multi-qubit registers for ...
Nuclear spins have been proposed for the embodiment of quantum information and yielded the most comp...
The transfer of information between different physical forms - for example processing entities and m...
There is a growing interest in hybrid solid-state quantum systems where nuclear spins, interfaced to...
The representation of information within the spins of electrons and nuclei has been a powerful metho...
Individually addressed Er3+ ions in solid-state hosts are promising resources for quantum repeaters,...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
A switchable interaction between pairs of highly coherent qubits is a crucial ingredient for the phy...
Hybrid quantum registers, such as electron-nuclear spin systems, have emerged as promising hard- war...
Pulsed magnetic resonance allows the quantum state of electronic and nuclear spins to be controlled ...
Entanglement is one of the most technologically important quantum phenomena and its con-trolled crea...