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Titel:

Optical single-shot readout of spin qubits in silicon

Dokumenttyp:
Forschungsdaten
Veröffentlichungsdatum:
10.12.2024
Verantwortlich:
Gritsch, Andreas
Autorinnen / Autoren:
Gritsch, Andreas; Ulanowski, Alexander; Pforr, Jakob; Reiserer, Andreas
Institutionszugehörigkeit:
TUM
Herausgeber:
TUM
Identifikator:
doi:10.14459/2024mp1760064
Enddatum der Datenerzeugung:
08.05.2024
Fachgebiet:
PHY Physik
Quellen der Daten:
Experimente und Beobachtungen / experiments and observations
Datentyp:
Tabellen / tables
Methode der Datenerhebung:
Using the experimental setup described in the referenced publication single photon detection events were recorded with a time-bin digitizer and further processed using the Python programming language and open-source tools. The processed datasets are stored in the HDF5 file format.
Beschreibung:
The digital revolution was enabled by nanostructured devices made from silicon. A similar prominence of this material is anticipated in the upcoming quantum era as the unrivalled maturity of silicon nanofabrication offers unique advantages for integration and up-scaling, while its favorable material properties facilitate quantum memories with hour-long coherence. While small spin-qubit registers have exceeded error-correction thresholds, their connection to large quantum computers is an outstand...     »
Schlagworte:
Rare-earth dopants; single emitters; quantum networks; spins in silicon; single-shot readout; photonic crystal cavity; nanophotonics; emitters in silicon; spin control
Technische Hinweise:
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Sprache:
en
Rechte:
by-sa, http://creativecommons.org/licenses/by-sa/4.0
Horizon 2020:
757772
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