Electron spins are amongst the most coherent solid-state systems known. However, to be used in devices for quantum sensing and information processing applications, they must typically be placed near interfaces. Understanding and mitigating the impacts of such interfaces on the coherence and spectral properties of electron spins is critical to realizing such applications, but it is also challenging: Inferring such data from single-spin studies requires many measurements to obtain meaningful results, while ensemble measurements typically give averaged results that hide critical information. Here, we report a comprehensive study of the coherence of near-surface bismuth donor spins in 28-silicon at millikelvin temperatures. In particular, we us...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
We implanted ultra low doses (0.2 to 2 x 10{sup 11} cm{sup -2}) of Sb ions into isotopically enriche...
The spin of an electron or a nucleus in a semiconductor(1) naturally implements the unit of quantum ...
Electron spins are amongst the most coherent solid-state systems known. However, to be used in devic...
Silicon is one of the most promising semiconductor materials for spin-based information processing d...
Despite the importance of isotopically purified samples in current experiments, there have been few ...
While Si and Si-based materials have dominated classical electronic device technology for 50 years, ...
In spin-based quantum-information-processing devices, the presence of control and detection circuitr...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
There is a growing interest in bismuth-doped silicon (Si:Bi) as an alternative to the well-studied p...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Pulsed electrically detected magnetic resonance of phosphorous (31P) in bulk crystalline silicon at ...
International audienceAbstract Semiconductor spin qubits based on spin–orbit states are responsive t...
Selectively interfacing solid-state defect electron spins to desired control mechanisms and quantum ...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
We implanted ultra low doses (0.2 to 2 x 10{sup 11} cm{sup -2}) of Sb ions into isotopically enriche...
The spin of an electron or a nucleus in a semiconductor(1) naturally implements the unit of quantum ...
Electron spins are amongst the most coherent solid-state systems known. However, to be used in devic...
Silicon is one of the most promising semiconductor materials for spin-based information processing d...
Despite the importance of isotopically purified samples in current experiments, there have been few ...
While Si and Si-based materials have dominated classical electronic device technology for 50 years, ...
In spin-based quantum-information-processing devices, the presence of control and detection circuitr...
Spin impurities in diamond have emerged as a promising building block in a wide range of solid-state...
There is a growing interest in bismuth-doped silicon (Si:Bi) as an alternative to the well-studied p...
Spin properties of donor impurities in silicon have been investigated by electron spin resonance (ES...
Pulsed electrically detected magnetic resonance of phosphorous (31P) in bulk crystalline silicon at ...
International audienceAbstract Semiconductor spin qubits based on spin–orbit states are responsive t...
Selectively interfacing solid-state defect electron spins to desired control mechanisms and quantum ...
Ensembles of bismuth-donor spins in silicon are promising storage elements for microwave quantum mem...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
We implanted ultra low doses (0.2 to 2 x 10{sup 11} cm{sup -2}) of Sb ions into isotopically enriche...
The spin of an electron or a nucleus in a semiconductor(1) naturally implements the unit of quantum ...