56 citations · 90 across the 3 of their papers we have counts for
6 papers
Distant spin entanglement via fast and coherent electron shuttling
Baptiste Jadot, Pierre-André Mortemousque, Emmanuel Chanrion +6
In the quest for large-scale quantum computing, networked quantum computers offer a natural path towards scalability. Now that nearest neighbor entanglement has been demonstrated f…
Charge detection in an array of CMOS quantum dots
Emmanuel Chanrion, David J. Niegemann, Benoit Bertrand +15
The recent development of arrays of quantum dots in semiconductor nanostructures highlights the progress of quantum devices toward large scale. However, how to realize such arrays…
Gate reflectometry for probing charge and spin states in linear Si MOS split-gate arrays
L. Hutin, B. Bertrand, E. Chanrion +20
We fabricated linear arrangements of multiple splitgate devices along an SOI mesa, thus forming a 2xN array of individually controllable Si quantum dots (QDs) with nearest neighbor…
Towards scalable silicon quantum computing
M. Vinet, L. Hutin, B. Bertrand +20
We report the efforts and challenges dedicated towards building a scalable quantum computer based on Si spin qubits. We review the advantages of relying on devices fabricated in a…
Gate-Based High Fidelity Spin Read-out in a CMOS Device
Matias Urdampilleta, David J. Niegemann, Emmanuel Chanrion +13
The engineering of electron spin qubits in a compact unit cell embedding all quantum functionalities is mandatory for large scale integration. In particular, the development of a h…
Coherent control of individual electron spins in a two dimensional array of quantum dots
Pierre-Andre Mortemousque, Emmanuel Chanrion, Baptiste Jadot +6
The ability to manipulate coherently individual quantum objects organized in arrays is a prerequisite to any scalable quantum information platform. For electron spin qubits, it req…