activity
20232025
most citedHigh fidelity optical readout of a nuclear spin qubit in Silicon Carbide

1 citations · 1 across the 2 of their papers we have counts for

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quant-ph2025

Localization and coherent control of 25 nuclear spins in Silicon Carbide

Pierre Kuna, Erik Hesselmeier-Hüttmann, Phillip Schillinger +7

Optically addressable spin defects are excellent candidate platform for quantum sensing and quantum network. Nuclear spins coupled to color centers naturally enable long lived quan…

quant-ph2024

Single V2 defect in 4H Silicon Carbide Schottky diode at low temperature

Timo Steidl, Pierre Kuna, Erik Hesselmeier-Hüttmann +10

Nanoelectrical and photonic integration of quantum optical components is crucial for scalable solid-state quantum technologies. Silicon carbide stands out as a material with mature…

quant-ph20241 cited

High fidelity optical readout of a nuclear spin qubit in Silicon Carbide

Erik Hesselmeier, Oliver von Berg, Pierre Kuna +7

Quantum state readout is a key requirement for a successful qubit platform. In this work we demonstrate a high fidelity quantum state readout of a V2 center nuclear spin based on a…

quant-ph2023

Measuring nuclear spin qubits by qudit-enhanced spectroscopy in Silicon Carbide

Erik Hesselmeier, Pierre Kuna, István Takács +8

Nuclear spins with hyperfine coupling to single electron spins are highly valuable quantum bits. In this work we probe and characterise the particularly rich nuclear spin environme…

quant-ph2023

Spectral stability of V2 centres in sub-micron 4H-SiC membranes

Jonah Heiler, Jonathan Körber, Erik Hesselmeier +9

Colour centres in silicon carbide emerge as a promising semiconductor quantum technology platform with excellent spin-optical coherences.However, recent efforts towards maximising…