This research was funded by the joint EPSRC (EP/I035536) / NSF (DMR-1107606) Materials World Network grant (BWL, GP, JJLM, SAL), EPSRC grant EP/K025562/1 (BWL and JJLM), the European Research Council under the European Community's Seventh Framework Programme (FP7/2007-2013) / ERC Grant Agreement No. 279781 (JJLM), partly by the NSF MRSEC grant DMR-0819860 (SAL), the Department of Energy, Office of Basic Energy Sciences grant DE-SC0002140 (RNB). BWL and JJLM thank the Royal Society for a University Research Fellowship.We present a complete theoretical treatment of Stark effects in bulk doped silicon, whose predictions are supported by experimental measurements. A multivalley effective mass theory, dealing nonperturbatively with valley-orbit ...
This research was funded by the joint EPSRC (EP/I035536)–NSF (Grant No. DMR-1107606) Materials World...
Quantum wave function engineering of dopant-based Si nanostructures reveals new physics in the solid...
Phosphorus donor nuclear spins in silicon couple weakly to the environment making them promising can...
We present a complete theoretical treatment of Stark effects in bulk doped silicon, whose prediction...
The Stark shift of the hyperfine coupling constant is investigated for a P donor in Si far below the...
Adiabatic shuttling of single impurity bound electrons to gate-induced surface states in semiconduct...
We report Stark shift measurements for 121Sb donor electronspins in silicon using pulsed electron sp...
Understanding the behavior of donor bound electronic states under electric and magnetic fields is a ...
Adiabatic shuttling of single impurity bound electrons to gate-induced surface states in semiconduct...
The Stark shift of the hyperfine coupling constant is investigated for a P donor in Si far below the...
We compute within the effective-mass theory and without adjustable parameters the Stark effect for s...
This PhD work took place in the framework of theoretical research aimed at implementation of quantu...
Spin qubits based on shallow donors in silicon are a promising quantum information technology with e...
We develop an efficient back gate for silicon-on-insulator (SOI) devices operating at cryogenic temp...
Atomistic tight-binding (TB) simulations are performed to calculate the Stark shift of the hyperfine...
This research was funded by the joint EPSRC (EP/I035536)–NSF (Grant No. DMR-1107606) Materials World...
Quantum wave function engineering of dopant-based Si nanostructures reveals new physics in the solid...
Phosphorus donor nuclear spins in silicon couple weakly to the environment making them promising can...
We present a complete theoretical treatment of Stark effects in bulk doped silicon, whose prediction...
The Stark shift of the hyperfine coupling constant is investigated for a P donor in Si far below the...
Adiabatic shuttling of single impurity bound electrons to gate-induced surface states in semiconduct...
We report Stark shift measurements for 121Sb donor electronspins in silicon using pulsed electron sp...
Understanding the behavior of donor bound electronic states under electric and magnetic fields is a ...
Adiabatic shuttling of single impurity bound electrons to gate-induced surface states in semiconduct...
The Stark shift of the hyperfine coupling constant is investigated for a P donor in Si far below the...
We compute within the effective-mass theory and without adjustable parameters the Stark effect for s...
This PhD work took place in the framework of theoretical research aimed at implementation of quantu...
Spin qubits based on shallow donors in silicon are a promising quantum information technology with e...
We develop an efficient back gate for silicon-on-insulator (SOI) devices operating at cryogenic temp...
Atomistic tight-binding (TB) simulations are performed to calculate the Stark shift of the hyperfine...
This research was funded by the joint EPSRC (EP/I035536)–NSF (Grant No. DMR-1107606) Materials World...
Quantum wave function engineering of dopant-based Si nanostructures reveals new physics in the solid...
Phosphorus donor nuclear spins in silicon couple weakly to the environment making them promising can...