Selective Optical Addressing of Nuclear Spins through Superhyperfine Interaction in Rare-Earth Doped Solids.

Selective Optical Addressing of Nuclear Spins through Superhyperfine Interaction in Rare-Earth Doped Solids.
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通过稀土掺杂固体中的超超精细相互作用对核自旋进行选择性光学寻址。

DOI:
10.1103/physrevlett.120.197401
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发表时间:
2017
影响因子:
8.6
通讯作者:
T. Chanelière
T. Chanelière
中科院分区:
物理与天体物理1区
文献类型:
--
作者:
B. Car;L. Veissier;A. Louchet;J. Gouet;T. Chanelière

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在Er^{3+}:Y_{2}SiO_{5}中,我们证明了通过与具有大land<s:1> g因子的Er^{3+}电子自旋的超精细耦合,可以选择性地对^{89}Y^{3+}核自旋进行光学寻址。我们用光子回波技术对电子-核自旋混合进行了实验研究,并验证了我们的模型。通过调整磁场强度和方向,设计了Y^{3+}核自旋的选择性光学寻址。这是实现由电信光子光学寻址的长寿命固态量子比特的重要一步。
In Er^{3+}:Y_{2}SiO_{5}, we demonstrate the selective optical addressing of the ^{89}Y^{3+} nuclear spins through their superhyperfine coupling with the Er^{3+} electronic spins possessing large Landé g factors. We experimentally probe the electron-nuclear spin mixing with photon echo techniques and validate our model. The site-selective optical addressing of the Y^{3+} nuclear spins is designed by adjusting the magnetic field strength and orientation. This constitutes an important step towards the realization of long-lived solid-state qubits optically addressed by telecom photons.
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