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Book Sections Year : 2018

Control of single spin in CMOS devices and its application for quantum bits.

Abstract

We show how to measure and manipulate a single spin in a CMOS device fabricated in a preindustrial 300 nm CMOS foundry. The device can be used as a spin quantum bit working at very low temperature. The spin manipulation is done by a microwave electric field applied directly on a gate. The presented results are a proof-of-principle demonstration of the possibility to define qubits by means of conventional industrial fabrication processes.
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Dates and versions

hal-02024444 , version 1 (19-12-2019)

Identifiers

  • HAL Id : hal-02024444 , version 1

Cite

Romain Maurand, Dharam Kotekar-Patil, Andrea Corna, Heorhii Bohuslavskyi, Alessandro Crippa, et al.. Control of single spin in CMOS devices and its application for quantum bits.. Simon Deleonibus. Emerging Devices for Low-Power and High-Performance Nanosystems: Physics, Novel Functions, and Data Processing, 3, Taylor & Francis, pp.201-230, 2018, Pan Stanford Series on Intelligent Nanosystems, 9789814800112. ⟨hal-02024444⟩
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