6 citations · 6 across the 1 of their papers we have counts for
6 papers
Quantum communication networks with defects in silicon carbide
Philipp Sohr, Philipp Koller, Sebastian Ecker +23
Quantum communication promises unprecedented capabilities enabled by the transmission of quantum states of light. However, current implementations face severe distance limitations…
Partial Landau-Zener transitions and applications to qubit shuttling
Jonas R. F. Lima, Guido Burkard
The transition dynamics of two-state systems with time-dependent energy levels, first considered by Landau, Zener, Majorana, and Stückelberg, is one of the basic models in quantum…
Strain-enabled control of the vanadium qudit in silicon carbide
Philipp Koller, Thomas Astner, Benedikt Tissot +2
Vanadium in silicon carbide is a promising spin photon interface candidate with optical transitions in the telecom range and a long lived electron spin, hosted in an advanced semic…
Entanglement generation using single-photon pulse reflection in realistic networks
Ferdinand Omlor, Benedikt Tissot, Guido Burkard
A general entanglement generation protocol between remote stationary qubits using single-photon reflection in a photonic network is explored theoretically. The nodes of the network…
Extended spin relaxation times of optically addressed telecom defects in silicon carbide
Jonghoon Ahn, Christina Wicker, Nolan Bitner +7
Optically interfaced solid-state defects are promising candidates for quantum communication technologies. The ideal defect system would feature bright telecom emission, long-lived…
Multiband theory for hexagonal germanium
Yetkin Pulcu, János Koltai, Andor Kormányos +1
The direct bandgap found in hexagonal germanium and some of its alloys with silicon allows for an optically active material within the group-IV semiconductor family with various po…