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首页> 外文期刊>AIP Advances >Circuit-quantum electrodynamics with direct magnetic coupling to single-atom spin qubits in isotopically enriched 28Si
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Circuit-quantum electrodynamics with direct magnetic coupling to single-atom spin qubits in isotopically enriched 28Si

机译:直接磁耦合至同位素富集的28Si中的单原子自旋量子位的电路量子电动力学

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摘要

Recent advances in silicon nanofabrication have allowed the manipulation of spin qubits that are extremely isolated from noise sources, being therefore the semiconductor equivalent of single atoms in vacuum. We investigate the possibility of directly coupling an electron spin qubit to a superconducting resonator magnetic vacuum field. By using resonators modified to increase the vacuum magnetic field at the qubit location, and isotopically purified 28Si substrates, it is possible to achieve coupling rates faster than the single spin dephasing. This opens up new avenues for circuit-quantum electrodynamics with spins, and provides a pathway for dispersive read-out of spin qubits via superconducting resonators.
机译:硅纳米制造的最新进展已允许对与噪声源极度隔离的自旋量子位进行操作,因此是真空中单原子的半导体等效物。我们研究了将电子自旋量子位直接耦合到超导谐振器磁真空场的可能性。通过使用经改进以增加量子位位置处的真空磁场的谐振器和同位素纯化的28Si衬底,可以实现比单自旋移相更快的耦合速率。这为自旋的电路量子电动力学开辟了新途径,并为通过超导谐振器分散读出自旋量子位提供了一条途径。

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