Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candidates for quantum information. The electron spin has been proposed as a register with fast manipulation and the nuclear spin as a memory with long coherence times. However, this division reduces the complexity of the donor system, in particular behaviors emerging from their interaction. In natural silicon, there is also the presence of 29Si nuclear spins in the donor environment; though they are generally seen as a source of decoherence, they are quantum systems that can be investigated too. The main subject of this thesis is the study of the interactions between these various spins, using different methods to probe and control them. I first c...
© 2015 American Physical Society. We demonstrate an efficient control of Si29 nuclear spins for spec...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
In this thesis we investigate donor molecules as a resource for scaling-up donor-based spin qubits i...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Silicon is one of the most promising semiconductor materials for spin-based information processing d...
We examine a 31P donor electron spin in a Si crystal to be used for the purpose of quantum computati...
We study the low-temperature dynamics of a shallow donor, e.g., 31P, impurity electron spin in silic...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
Spins of electrons bound to donor electrons are attractive candidates for exploration of quantum inf...
The electronic and nuclear spin degrees of freedom of donor impurities in silicon form ultra-coheren...
Given the effectiveness of semiconductor devices for classical computation one is naturally led to c...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...
abstract: In this paper, optimal control routines are applied to an existing problem of electron sta...
© 2020 Danielle HolmesQuantum computers are set to revolutionise technology by harnessing the immens...
© 2015 American Physical Society. We demonstrate an efficient control of Si29 nuclear spins for spec...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
In this thesis we investigate donor molecules as a resource for scaling-up donor-based spin qubits i...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Silicon is one of the most promising semiconductor materials for spin-based information processing d...
We examine a 31P donor electron spin in a Si crystal to be used for the purpose of quantum computati...
We study the low-temperature dynamics of a shallow donor, e.g., 31P, impurity electron spin in silic...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
Spins of electrons bound to donor electrons are attractive candidates for exploration of quantum inf...
The electronic and nuclear spin degrees of freedom of donor impurities in silicon form ultra-coheren...
Given the effectiveness of semiconductor devices for classical computation one is naturally led to c...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...
abstract: In this paper, optimal control routines are applied to an existing problem of electron sta...
© 2020 Danielle HolmesQuantum computers are set to revolutionise technology by harnessing the immens...
© 2015 American Physical Society. We demonstrate an efficient control of Si29 nuclear spins for spec...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
In this thesis we investigate donor molecules as a resource for scaling-up donor-based spin qubits i...