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在类II族原子中保持核自旋态相干性的边带冷却。

Sideband cooling while preserving coherences in the nuclear spin state in group-II-like atoms.

作者信息

Reichenbach Iris, Deutsch Ivan H

机构信息

Department of Physics and Astronomy, University of New Mexico, Albuquerque, New Mexico 87131, USA.

出版信息

Phys Rev Lett. 2007 Sep 21;99(12):123001. doi: 10.1103/PhysRevLett.99.123001. Epub 2007 Sep 20.

Abstract

We propose a method for laser cooling group-II-like atoms without changing the quantum state of their nuclear spins, thus preserving coherences that are usually destroyed by optical pumping in the cooling process. As group-II-like atoms have a (1)S(0) closed-shell ground state, nuclear spin and electronic angular momentum are decoupled, allowing for their independent manipulation. The hyperfine interaction that couples these degrees of freedom in excited states can be suppressed through the application of external magnetic fields. Our protocol employs resolved-sideband cooling on the forbidden clock transition, (1)S(0) --> (3)P(0), with quenching via coupling to the rapidly decaying (1)P(1) state, deep in the Paschen-Back regime. This makes it possible to laser cool neutral atomic qubits without destroying the quantum information stored in their nuclear spins, as shown in two examples, (171)Yb and (87)Sr.

摘要

我们提出了一种用于激光冷却类II族原子的方法,该方法不会改变其核自旋的量子态,从而保留了通常在冷却过程中因光泵浦而被破坏的相干性。由于类II族原子具有(1)S(0)闭壳层基态,核自旋与电子角动量解耦,从而允许对它们进行独立操控。通过施加外部磁场,可以抑制在激发态中耦合这些自由度的超精细相互作用。我们的方案在禁戒时钟跃迁(1)S(0)→(3)P(0)上采用分辨边带冷却,并通过耦合到帕邢-巴克区域深处快速衰减的(1)P(1)态进行猝灭。这使得在不破坏存储在其核自旋中的量子信息的情况下对中性原子量子比特进行激光冷却成为可能,如(171)Yb和(87)Sr这两个例子所示。

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