12 citations · 28 across the 4 of their papers we have counts for
6 papers
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…
Multi-module microwave assembly for fast read-out and charge noise characterization of silicon quantum dots
Felix-Ekkehard von Horstig, David J. Ibberson, Giovanni A. Oakes +7
Fast measurements of quantum devices is important in areas such as quantum sensing, quantum computing and nanodevice quality analysis. Here, we develop a superconductor-semiconduct…
A quantum dot-based frequency multiplier
G. A. Oakes, L. Peri, L. Cochrane +8
Silicon offers the enticing opportunity to integrate hybrid quantum-classical computing systems on a single platform. For qubit control and readout, high-frequency signals are requ…
Intrinsic Noise of the Single Electron Box
Laurence Cochrane, Ashwin A. Seshia, M. Fernando Gonzalez Zalba
The radio-frequency Single-Electron Box is becoming an attractive charge sensor for semiconductor-based quantum computing devices due to its high sensitivity and small footprint, w…
Quantum Dot-Based Parametric Amplifiers
Laurence Cochrane, Theodor Lundberg, David J. Ibberson +8
Josephson parametric amplifiers (JPAs) approaching quantum-limited noise performance have been instrumental in enabling high fidelity readout of superconducting qubits and, recentl…
Large dispersive interaction between a CMOS double quantum dot and microwave photons
David J. Ibberson, Theodor Lundberg, James A. Haigh +11
We report fast charge state readout of a double quantum dot in a CMOS split-gate silicon nanowire transistor via the large dispersive interaction with microwave photons in a lumped…