182 citations · 367 across the 6 of their papers we have counts for
6 papers
An Integrated Deep-Cryogenic Temperature Sensor in CMOS Technology for Quantum Computing Applications
Fabio Olivieri, Grayson M. Noah, Thomas Swift +3
On-chip thermometry at deep-cryogenic temperatures is vital in quantum computing applications to accurately quantify the effect of increased temperature on qubit performance. In th…
Electrical readout of spins in the absence of spin blockade
Felix-Ekkehard von Horstig, Lorenzo Peri, Virginia N. Ciriano-Tejel +5
In semiconductor nanostructures, spin blockade (SB) is the most scalable mechanism for electrical spin readout, requiring only two bound spins for its implementation. In conjunctio…
Roadmap on quantum nanotechnologies
Arne Laucht, Frank Hohls, Niels Ubbelohde +26
Quantum phenomena are typically observable at length and time scales smaller than those of our everyday experience, often involving individual particles or excitations. The past fe…
Hybrid optical-electrical detection of donor electron spins with bound excitons in silicon
C. C. Lo, M. Urdampilleta, P. Ross +5
Electrical detection of spins is an essential tool in understanding the dynamics of spins in semiconductor devices, providing valuable insights for applications ranging from optoel…
Ambipolar quantum dots in intrinsic silicon
A. C. Betz, M. F. Gonzalez-Zalba, G. Podd +1
We electrically measure intrinsic silicon quantum dots with electrostatically defined tunnel barriers. The presence of both p-type and n-type ohmic contacts enables the accumulatio…
A high-sensitivity gate-based charge sensor in silicon
M. F. Gonzalez-Zalba, A. J. Ferguson, S. Barraud +1
The implementation of a quantum computer requires a qubit-specific measurement capability to read-out the final state of a quantum system. The model of spin dependent tunneling fol…