most citedSilicon-Vacancy Spin Qubit in Diamond: A Quantum Memory Exceeding 10 ms with Single-Shot State Readout

468 citations · 468 across the 1 of their papers we have counts for

collaborators

5 papers

quant-ph2019

Experimental demonstration of memory-enhanced quantum communication

Mihir K. Bhaskar, Ralf Riedinger, Bartholomeus Machielse +8

The ability to communicate quantum information over long distances is of central importance in quantum science and engineering. For example, it enables secure quantum key distribut…

quant-ph2019

An integrated nanophotonic quantum register based on silicon-vacancy spins in diamond

C. T. Nguyen, D. D. Sukachev, M. K. Bhaskar +10

We realize an elementary quantum network node consisting of a silicon-vacancy (SiV) color center inside a diamond nanocavity coupled to a nearby nuclear spin with 100 ms long coher…

quant-ph2019

Quantum network nodes based on diamond qubits with an efficient nanophotonic interface

C. T. Nguyen, D. D. Sukachev, M. K. Bhaskar +8

Quantum networks require functional nodes consisting of stationary registers with the capability of high-fidelity quantum processing and storage, which efficiently interface with p…

physics.app-ph2019

Quantum interference of electromechanically stabilized emitters in nanophotonic devices

Bartholomeus Machielse, Stefan Bogdanovic, Srujan Meesala +15

Photon-mediated coupling between distant matter qubits may enable secure communication over long distances, the implementation of distributed quantum computing schemes, and the exp…

quant-ph2017468 cited

Silicon-Vacancy Spin Qubit in Diamond: A Quantum Memory Exceeding 10 ms with Single-Shot State Readout

Denis D. Sukachev, Alp Sipahigil, Christian T. Nguyen +4

The negatively-charged silicon-vacancy (SiV) color center in diamond has recently emerged as a promising system for quantum photonics. Its symmetry-protected optical transition…