811 citations · 919 across the 14 of their papers we have counts for
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Hybrid Quantum Systems: Coupling Single-Molecule Magnet Qudits with Industrial Silicon Spin Qubits
Daniel Schroller, Daniel Sitter, Thomas Koch +12
Molecular spin qudits offer an attractive platform for quantum memory, combining long coherence times with rich multi-level spin structures. Terbium bis(phthalocyaninato) (TbPc…
Rapid Autotuning of a SiGe Quantum Dot into the Single-Electron Regime with Machine Learning and RF-Reflectometry FPGA-Based Measurements
Marc-Antoine Roux, Joffrey Rivard, Victor Yon +18
Spin qubits need to operate within a very precise voltage space around charge state transitions to achieve high-fidelity gates. However, the stability diagrams that allow the ident…
Investigation of Low Frequency Noise in CryoCMOS devices through Statistical Single Defect Spectroscopy
Edoardo Catapano, Anirudh Varanasi, Philippe Roussel +9
High 1/f noise in CryoCMOS devices is a critical parameter to keep under control in the design of complex circuits for low temperatures applications. Current models predict the 1/f…
Statistical Analysis of Spurious Dot Formation in SiMOS Single Electron Transistors
Kuan-Chu Chen, Clement Godfrin, George Simion +8
The spatial distribution of spurious dots in SiMOS single-electron transistors (SETs), fabricated on an industrial 300 mm process line, has been statistically analyzed. To have a d…
Industrial 300mm wafer processed spin qubits in natural silicon/silicon-germanium
Thomas Koch, Clement Godfrin, Viktor Adam +11
The realisation of an universal quantum computer will require the operation of thousands to millions of qubits. The possibility of using existing industrial semiconductor fabricati…
CMOS compatibility of semiconductor spin qubits
Nard Dumoulin Stuyck, Andre Saraiva, Will Gilbert +7
Several domains of society will be disrupted once millions of high-quality qubits can be brought together to perform fault-tolerant quantum computing (FTQC). All quantum computing…