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20152020
most citedOptimal state estimation for cavity optomechanical systems

102 citations · 102 across the 1 of their papers we have counts for

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quant-ph2020

Efficient entanglement of spin qubits mediated by a hot mechanical oscillator

Emma Rosenfeld, Ralf Riedinger, Jan Gieseler +2

Localized electronic and nuclear spin qubits in the solid state constitute a promising platform for storage and manipulation of quantum information, even at room temperature. Howev…

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…

quant-ph2018

An optomechanical Bell test

Igor Marinkovic, Andreas Wallucks, Ralf Riedinger +3

Over the past few decades, experimental tests of Bell-type inequalities have been at the forefront of understanding quantum mechanics and its implications. These strong bounds on s…

quant-ph2018

Near-field coupling of a levitated nanoparticle to a photonic crystal cavity

Lorenzo Magrini, Richard A. Norte, Ralf Riedinger +6

Quantum control of levitated dielectric particles is an emerging subject in quantum optomechanics. A major challenge is to efficiently measure and manipulate the particle's motion…