In spin-based quantum-information-processing devices, the presence of control and detection circuitry can change the local environment of a spin by introducing strain and electric fields, altering its resonant frequencies. These resonance shifts can be large compared to intrinsic spin linewidths, and it is therefore important to study, understand, and model such effects in order to better predict device performance. We investigate a sample of bismuth donor spins implanted in a silicon chip, on top of which a superconducting aluminum microresonator is fabricated. The on-chip resonator provides two functions: it produces local strain in the silicon due to the larger thermal contraction of the aluminum, and it enables sensitive electron spin-r...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Spintronics attracts at present much interest because of the potential to build novel spin-based dev...
In spin-based quantum-information-processing devices, the presence of control and detection circuitr...
International audienceWe experimentally study the coupling of group V donor spins in silicon to mech...
Substitutional group V donors in silicon present a highly attractive spin qubit platform, o ering am...
Electron spins are amongst the most coherent solid-state systems known. However, to be used in devic...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
Donor spin states in silicon are a promising candidate for quantum information processing. One possi...
We report Stark shift measurements for 121Sb donor electronspins in silicon using pulsed electron sp...
Donor spin states in silicon are a promising candidate for quantum information processing. One possi...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
Low-field (6-110 mT) magnetic resonance of bismuth (Bi) donors in silicon has been observed by moni...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Spintronics attracts at present much interest because of the potential to build novel spin-based dev...
In spin-based quantum-information-processing devices, the presence of control and detection circuitr...
International audienceWe experimentally study the coupling of group V donor spins in silicon to mech...
Substitutional group V donors in silicon present a highly attractive spin qubit platform, o ering am...
Electron spins are amongst the most coherent solid-state systems known. However, to be used in devic...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
Donor spin states in silicon are a promising candidate for quantum information processing. One possi...
We report Stark shift measurements for 121Sb donor electronspins in silicon using pulsed electron sp...
Donor spin states in silicon are a promising candidate for quantum information processing. One possi...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
Low-field (6-110 mT) magnetic resonance of bismuth (Bi) donors in silicon has been observed by moni...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Spintronics attracts at present much interest because of the potential to build novel spin-based dev...