Donors in silicon hold considerable promise for emerging quantum technologies, due to their uniquely long electron spin coherence times. Bismuth donors in silicon differ from more widely studied group V donors, such as phosphorous, in several significant respects: They have the strongest binding energy (70.98 meV), a large nuclear spin (I=9/2), and a strong hyperfine coupling constant (A=1475.4 MHz). These larger energy scales allow us to perform a detailed test of theoretical models describing the spectral diffusion mechanism that is known to govern the electron spin decoherence of P donors in natural silicon. We report the electron-nuclear double resonance spectra of the Bi donor, across the range 200 MHz to 1.4 GHz, and confirm that coh...
The spins of phosphorus doped in silicon are potential candidates for a quantum computing device, w...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
In these years the quantum computer has attracted much attention. Above all,as proposed by Kane,the ...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Bismuth (209Bi) is the deepest group V donor in silicon and possesses the most extreme characteristi...
A prerequisite for exploiting spins for quantum data storage and processing is long spin coherence t...
There is a growing interest in bismuth-doped silicon (Si:Bi) as an alternative to the well-studied p...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Silicon-based quantum information processing devices show great promise, being one of the most advan...
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...
The ability to electrically probe the spin properties of solid state systems underlies a wide variet...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
Spectral diffusion arising from Si29 nuclear spin flip-flops, known to be a primary source of electr...
The spins of phosphorus doped in silicon are potential candidates for a quantum computing device, w...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
In these years the quantum computer has attracted much attention. Above all,as proposed by Kane,the ...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Bismuth (209Bi) is the deepest group V donor in silicon and possesses the most extreme characteristi...
A prerequisite for exploiting spins for quantum data storage and processing is long spin coherence t...
There is a growing interest in bismuth-doped silicon (Si:Bi) as an alternative to the well-studied p...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Silicon-based quantum information processing devices show great promise, being one of the most advan...
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...
The ability to electrically probe the spin properties of solid state systems underlies a wide variet...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
Spectral diffusion arising from Si29 nuclear spin flip-flops, known to be a primary source of electr...
The spins of phosphorus doped in silicon are potential candidates for a quantum computing device, w...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
In these years the quantum computer has attracted much attention. Above all,as proposed by Kane,the ...