Low-field (6-110 mT) magnetic resonance of bismuth (Bi) donors in silicon has been observed by monitoring the change in photoconductivity induced by spin dependent recombination. The spectra at various resonance frequencies show signal intensity distributions drastically different from that observed in conventional electron paramagnetic resonance, attributed to different recombination rates for the forty possible combinations of spin states of a pair of a Bi donor and a paramagnetic recombination center. An excellent tunability of Bi excitation energy for the future coupling with superconducting flux qubits at low fields has been demonstrated.This work was supported in part by Grant-in-Aid for Scientific Research and Project for De...
© 2020 Danielle HolmesQuantum computers are set to revolutionise technology by harnessing the immens...
In recent years, a variety of solid-state qubits has been realized, including quantum dots, supercon...
ManuscriptIn recent years, a variety of solid-state qubits has been realized, including quantum dots...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
Donors in silicon hold considerable promise for emerging quantum technologies, due to their uniquely...
There is a growing interest in bismuth-doped silicon (Si:Bi) as an alternative to the well-studied p...
In spin-based quantum-information-processing devices, the presence of control and detection circuitr...
Bismuth (209Bi) is the deepest group V donor in silicon and possesses the most extreme characteristi...
Journal ArticleAn experimental study on the nature of spin-dependent excess charge-carrier transitio...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
We have performed continuous wave and pulsed electron spin resonance measurements of implanted bismu...
We investigate electron paramagnetic resonance spectra of bismuth-doped silicon, at intermediate mag...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
© 2020 Danielle HolmesQuantum computers are set to revolutionise technology by harnessing the immens...
In recent years, a variety of solid-state qubits has been realized, including quantum dots, supercon...
ManuscriptIn recent years, a variety of solid-state qubits has been realized, including quantum dots...
Donors in silicon hold considerable promise for emerging quantum technologies, due to the their uniq...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
Spins in nuclear-spin-free solid state systems such as isotopically purified 28Si have seen extensiv...
Donors in silicon hold considerable promise for emerging quantum technologies, due to their uniquely...
There is a growing interest in bismuth-doped silicon (Si:Bi) as an alternative to the well-studied p...
In spin-based quantum-information-processing devices, the presence of control and detection circuitr...
Bismuth (209Bi) is the deepest group V donor in silicon and possesses the most extreme characteristi...
Journal ArticleAn experimental study on the nature of spin-dependent excess charge-carrier transitio...
Single donors in semiconductors are promising candidates for spin qubits and have attracted a lot of...
We have performed continuous wave and pulsed electron spin resonance measurements of implanted bismu...
We investigate electron paramagnetic resonance spectra of bismuth-doped silicon, at intermediate mag...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
© 2020 Danielle HolmesQuantum computers are set to revolutionise technology by harnessing the immens...
In recent years, a variety of solid-state qubits has been realized, including quantum dots, supercon...
ManuscriptIn recent years, a variety of solid-state qubits has been realized, including quantum dots...