most citedCMOS Position-Based Charge Qubits: Theoretical Analysis of Control and Entanglement

32 citations · 43 across the 3 of their papers we have counts for

collaborators

5 papers

quant-ph20206 cited

Simulation Methodology for Electron Transfer in CMOS Quantum Dots

Andrii Sokolov, Dmytro Mishagli, Panagiotis Giounanlis +5

The construction of quantum computer simulators requires advanced software which can capture the most significant characteristics of the quantum behavior and quantum states of qubi…

physics.app-ph20205 cited

Electrostatic Near-Limits Kinetic Energy Harvesting from Arbitrary Input Vibrations

Armine Karami, Jérôme Juillard, Elena Blokhina +2

The full architecture of an electrostatic kinetic energy harvester (KEH) based on the concept of near-limits KEH is reported. This concept refers to the conversion of kinetic energ…

cond-mat.mes-hall201932 cited

CMOS Position-Based Charge Qubits: Theoretical Analysis of Control and Entanglement

Elena Blokhina, Panagiotis Giounanlis, Andrew Mitchell +2

In this study, a formal definition, robustness analysis and discussion on the control of a position-based semiconductor charge qubit are presented. Such a qubit can be realized in…

cond-mat.mes-hall2019

Analytical Solutions for N-Electron Interacting System Confined in Graph of Coupled Electrostatic Semiconductor and Superconducting Quantum Dots in Tight-Binding Model with Focus on Quantum Information Processing

Krzysztof Pomorski, Robert Bogdan Staszewski

Analytical solutions for a tight-binding model are presented for a position-based qubit and N interacting qubits realized by quasi-one-dimensional network of coupled quantum dots e…

cond-mat.mes-hall2019

Properties of Coupled Single-Electron Lines

Krzysztof Pomorski, Panagiotis Giounanlis, Elena Blokhina +3

Fundamental properties of two electrostatically interacting single-electron lines (SEL) are determined from a minimalistic tight-binding model. The lines are represented by a chain…