111 citations · 135 across the 3 of their papers we have counts for
7 papers · 1 filter
A Low-Temperature Tunable Microcavity featuring High Passive Stability and Microwave Integration
Yanik Herrmann, Julius Fischer, Stijn Scheijen +9
Open microcavities offer great potential for the exploration and utilization of efficient spin-photon interfaces with Purcell-enhanced quantum emitters thanks to their large spectr…
Coherent Coupling of a Diamond Tin-Vacancy Center to a Tunable Open Microcavity
Yanik Herrmann, Julius Fischer, Julia M. Brevoord +8
Efficient coupling of optically active qubits to optical cavities is a key challenge for solid-state-based quantum optics experiments and future quantum technologies. Here we prese…
Quantum networks based on color centers in diamond
Maximilian Ruf, Noel H. Wan, Hyeongrak Choi +2
With the ability to transfer and process quantum information, large-scale quantum networks will enable a suite of fundamentally new applications, from quantum communications to dis…
Resonant Excitation and Purcell Enhancement of Coherent Nitrogen-Vacancy Centers Coupled to a Fabry-Pérot Micro-Cavity
Maximilian Ruf, Matthew J. Weaver, Suzanne B. van Dam +1
The nitrogen-vacancy (NV) center in diamond has been established as a prime building block for quantum networks. However, scaling beyond a few network nodes is currently limited by…
Flexure-Tuned Membrane-at-the-Edge Optomechanical System
Vincent Dumont, Simon Bernard, Christoph Reinhardt +3
We introduce a passively-aligned, flexure-tuned cavity optomechanical system in which a membrane is positioned microns from one end mirror of a Fabry-Perot optical cavity. By displ…
Near-term quantum-repeater experiments with nitrogen-vacancy centers: Overcoming the limitations of direct transmission
Filip Rozpędek, Raja Yehia, Kenneth Goodenough +5
Quantum channels enable the implementation of communication tasks inaccessible to their classical counterparts. The most famous example is the distribution of secret key. However,…