29.2 A Cryo-CMOS Controller with Class-DE Driver and DC Magnetic-Field Tuning for Color-Center-Based Quantum Computers.

Luc Enthoven, Niels Fakkel, Hans Bartling, Margriet van Riggelen, Kai-Niklas Schymik, Jiwon Yun, Eftychia Tsapanou Katranara, René Vollmer, Tim Taminiau,Fabio Sebastiano,Masoud Babaie

IEEE International Solid-State Circuits Conference(2024)

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摘要
Color-center quantum bits (qubits), such as the Nitrogen-Vacancy center (NV) in diamond, have demonstrated entanglement between remote (>1.3km) qubits and excellent coherence times [1], all while operating at a few Kelvins. Compared to other qubit technologies typically operating at mK temperatures, the higher operating temperature of NVs enables scalable 3D integration with cryo-CMOS control electronics [2], provides significantly more cooling power, and removes the interconnect bottleneck between the qubits and the electronics in prior art [3–5]. Yet, no cryo-CMOS controller for NV-based quantum computers (QC) has been demonstrated.
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关键词
Magnetic Field,Quantum Computing,Low Voltage,Quality Factor,Current Source,Waveguide,Coulombic Efficiency,Permanent Magnet,Magnetic Flux,Frequency Control,Larmor Frequency,Prior Art,Liquid Helium,Zero-voltage Switching,Coil Current,Nitrogen-vacancy Centers,Shunt Capacitance,Rabi Frequency,Color Centers,Digital Input
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