113 citations · 331 across the 37 of their papers we have counts for
9 papers · 1 filter
Rapid cryogenic characterisation of 1024 integrated silicon quantum dots
Edward J. Thomas, Virginia N. Ciriano-Tejel, David F. Wise +8
Quantum computers are nearing the thousand qubit mark, with the current focus on scaling to improve computational performance. As quantum processors grow in complexity, new challen…
Alternative fast quantum logic gates using nonadiabatic Landau-Zener-Stückelberg-Majorana transitions
A. I. Ryzhov, O. V. Ivakhnenko, S. N. Shevchenko +2
A conventional realization of quantum logic gates and control is based on resonant Rabi oscillations of the occupation probability of the system. This approach has certain limitati…
Measurement of cryoelectronics heating using a local quantum dot thermometer in silicon
Mathieu de Kruijf, Grayson M. Noah, Alberto Gomez-Saiz +2
Silicon technology offers the enticing opportunity for monolithic integration of quantum and classical electronic circuits. However, the power consumption levels of classical elect…
Unified linear response theory of quantum electronic circuits
L. Peri, M. Benito, C. J. B. Ford +1
Modelling the electrical response of multi-level quantum systems at finite frequency has been typically performed in the context of two incomplete paradigms: (i) input-output theor…
CMOS on-chip thermometry at deep cryogenic temperatures
Grayson M. Noah, Thomas Swift, Mathieu de Kruijf +3
Accurate on-chip temperature sensing is critical for the optimal performance of modern CMOS integrated circuits (ICs), to understand and monitor localized heating around the chip d…
Beyond-adiabatic Quantum Admittance of a Semiconductor Quantum Dot at High Frequencies: Rethinking Reflectometry as Polaron Dynamics
L. Peri, G. A. Oakes, L. Cochrane +2
Semiconductor quantum dots operated dynamically are the basis of many quantum technologies such as quantum sensors and computers. Hence, modelling their electrical properties at mi…