The quantum coherence and gate fidelity of electron spin qubits in semiconductors are often limited by nuclear spin fluctuations. Enrichment of spin-zero isotopes in silicon markedly improves the dephasing time T*2, which, unexpectedly, can extend two orders of magnitude beyond theoretical expectations. Using a single-atom 31P qubit in enriched 28Si, we show that the abnormally long T*2 is due to the freezing of the dynamics of the residual 29Si nuclei, caused by the electron-nuclear hyperfine interaction. Inserting a waiting period when the electron is controllably removed unfreezes the nuclear dynamics and restores the ergodic T*2 value. Our conclusions are supported by a nearly parameter-free modeling of the 29Si nuclear spin dynamics, w...
The transfer of information between different physical forms - for example processing entities and m...
The understanding of weak measurements and interaction-free measurements has greatly expanded the co...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...
The spin of an electron or a nucleus in a semiconductor(1) naturally implements the unit of quantum ...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
We study the low-temperature dynamics of a shallow donor, e.g., 31P, impurity electron spin in silic...
The transfer of information between different physical forms is a central theme in communication and...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
Paramagnetic defects and nuclear spins are often the major sources of decoherence and spin relaxatio...
Nuclear spins in the solid state are both a cause of decoherence and a valuable resource for spin qu...
A quantum computer requires a quantum system that is isolated from its environment, but can be integ...
We examine a 31P donor electron spin in a Si crystal to be used for the purpose of quantum computati...
Despite the importance of isotopically purified samples in current experiments, there have been few ...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Silicon is one of the most promising semiconductor materials for spin-based information processing d...
The transfer of information between different physical forms - for example processing entities and m...
The understanding of weak measurements and interaction-free measurements has greatly expanded the co...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...
The spin of an electron or a nucleus in a semiconductor(1) naturally implements the unit of quantum ...
A huge effort is underway to develop semiconductor nanostructures as low-noise qubits. A key source ...
We study the low-temperature dynamics of a shallow donor, e.g., 31P, impurity electron spin in silic...
The transfer of information between different physical forms is a central theme in communication and...
We investigate spin coherence time of electrons bound to phosphorus donors in silicon sin-gle crysta...
Paramagnetic defects and nuclear spins are often the major sources of decoherence and spin relaxatio...
Nuclear spins in the solid state are both a cause of decoherence and a valuable resource for spin qu...
A quantum computer requires a quantum system that is isolated from its environment, but can be integ...
We examine a 31P donor electron spin in a Si crystal to be used for the purpose of quantum computati...
Despite the importance of isotopically purified samples in current experiments, there have been few ...
Donors in silicon, which combine an electron and nuclear spin, are some of the most promising candid...
Silicon is one of the most promising semiconductor materials for spin-based information processing d...
The transfer of information between different physical forms - for example processing entities and m...
The understanding of weak measurements and interaction-free measurements has greatly expanded the co...
Spin is a quantum mechanical property that describes the magnetic orientation of elementary and comp...