Scaling silicon-based quantum computing using CMOS technology

MF Gonzalez-Zalba, S De Franceschi, E Charbon… - Nature …, 2021 - nature.com
As quantum processors grow in complexity, attention is moving to the scaling prospects of
the entire quantum computing system, including the classical support hardware. Recent …

Advances and new research opportunities in quantum computing technology by integrating it with other ICCT underlying technologies

PS Aithal - International Journal of Case Studies in Business, IT …, 2023 - papers.ssrn.com
Advances and New Research Opportunities in Quantum Computing Technology by Integrating it
with Other ICCT Underlying Technologie Page 1 1 Advances and New Research Opportunities …

A cryo-CMOS chip that integrates silicon quantum dots and multiplexed dispersive readout electronics

A Ruffino, TY Yang, J Michniewicz, Y Peng… - Nature …, 2022 - nature.com
As quantum computers grow in complexity, the technology will have to evolve from large
distributed systems to compact integrated solutions. Spin qubits in silicon quantum dots are …

Cryo-CMOS circuits and systems for quantum computing applications

B Patra, RM Incandela, JPG Van Dijk… - IEEE Journal of Solid …, 2017 - ieeexplore.ieee.org
A fault-tolerant quantum computer with millions of quantum bits (qubits) requires massive yet
very precise control electronics for the manipulation and readout of individual qubits. CMOS …

Theoretical limit of low temperature subthreshold swing in field-effect transistors

A Beckers, F Jazaeri, C Enz - IEEE Electron Device Letters, 2019 - ieeexplore.ieee.org
This letter reports a temperature-dependent limit for the subthreshold swing in MOSFETs
that deviates from the Boltzmann limit at deep-cryogenic temperatures. Below a critical …

Design and characterization of a 28-nm bulk-CMOS cryogenic quantum controller dissipating less than 2 mW at 3 K

JC Bardin, E Jeffrey, E Lucero, T Huang… - IEEE Journal of Solid …, 2019 - ieeexplore.ieee.org
Implementation of an error-corrected quantum computer is believed to require a quantum
processor with a million or more physical qubits, and, in order to run such a processor, a …

A review on quantum computing: From qubits to front-end electronics and cryogenic MOSFET physics

F Jazaeri, A Beckers, A Tajalli… - 2019 MIXDES-26th …, 2019 - ieeexplore.ieee.org
Quantum computing (QC) has already entered the industrial landscape and several
multinational corporations have initiated their own research efforts. So far, many of these …

Characterization and modeling of 28-nm bulk CMOS technology down to 4.2 K

A Beckers, F Jazaeri, C Enz - IEEE Journal of the Electron …, 2018 - ieeexplore.ieee.org
This paper presents an experimental investigation, compact modeling, and low-temperature
physics-based modeling of a commercial 28-nm bulk CMOS technology operating at …

Cryogenic characterization of 22-nm FDSOI CMOS technology for quantum computing ICs

S Bonen, U Alakusu, Y Duan, MJ Gong… - IEEE Electron …, 2018 - ieeexplore.ieee.org
An approach is proposed to realize large-scale,“high-temperature” and high-fidelity quantum
computing integrated circuits based on single-and multiple-coupled quantum-dot electron …

A cryogenic broadband sub-1-dB NF CMOS low noise amplifier for quantum applications

Y Peng, A Ruffino, E Charbon - IEEE Journal of Solid-State …, 2021 - ieeexplore.ieee.org
A cryogenic broadband low noise amplifier (LNA) for quantum applications based on a
standard 40-nm CMOS technology is reported. The LNA specifications are derived from the …