1 citations · 1 across the 1 of their papers we have counts for
8 papers
Non-destructive optical readout of a superconducting qubit
Robert D. Delaney, Maxwell D. Urmey, Sarang Mittal +5
Entangling superconducting quantum processors via light would enable new means of secure communication and distributed quantum computing. However, transducing quantum signals betwe…
Characterization of Er:YVO for microwave to optical transduction
Tian Xie, Jake Rochman, John G. Bartholomew +6
Quantum transduction between microwave and optical frequencies is important for connecting superconducting quantum platforms in a quantum network. Ensembles of rare-earth ions are…
On-chip coherent microwave-to-optical transduction mediated by ytterbium in YVO
John G. Bartholomew, Jake Rochman, Tian Xie +5
Optical networks that distribute entanglement among quantum technologies will form a powerful backbone for quantum science but are yet to interface with leading quantum hardware su…
Coherent control and single-shot readout of a rare-earth ion embedded in a nanophotonic cavity
Jonathan M. Kindem, Andrei Ruskuc, John G. Bartholomew +3
Quantum networks based on optically addressable spin qubits promise to enable secure communication, distributed quantum computing, and tests of fundamental physics. Scaling up quan…
Nanophotonic quantum storage at telecommunications wavelength
Ioana Craiciu, Mi Lei, Jake Rochman +6
Quantum memories for light are important components for future long distance quantum networks. We present on-chip quantum storage of telecommunications band light at the single pho…
Characterization of for photonic quantum technologies
Jonathan M. Kindem, John G. Bartholomew, Philip J. T. Woodburn +5
Rare-earth ions in crystals are a proven solid-state platform for quantum technologies in the ensemble regime and attractive for new opportunities at the single ion level. Among th…