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通过非惯性参考系对量子绝热性的验证及其在囚禁离子中的实现。

Validation of quantum adiabaticity through non-inertial frames and its trapped-ion realization.

作者信息

Hu Chang-Kang, Cui Jin-Ming, Santos Alan C, Huang Yun-Feng, Li Chuan-Feng, Guo Guang-Can, Brito Frederico, Sarandy Marcelo S

机构信息

CAS Key Laboratory of Quantum Information, University of Science and Technology of China, Hefei, 230026, People's Republic of China.

CAS Center For Excellence in Quantum Information and Quantum Physics, University of Science and Technology of China, Hefei, 230026, People's Republic of China.

出版信息

Sci Rep. 2019 Jul 18;9(1):10449. doi: 10.1038/s41598-019-46754-z.

Abstract

Validity conditions for the adiabatic approximation are useful tools to understand and predict the quantum dynamics. Remarkably, the resonance phenomenon in oscillating quantum systems has challenged the adiabatic theorem. In this scenario, inconsistencies in the application of quantitative adiabatic conditions have led to a sequence of new approaches for adiabaticity. Here, by adopting a different strategy, we introduce a validation mechanism for the adiabatic approximation by driving the quantum system to a non-inertial reference frame. More specifically, we begin by considering several relevant adiabatic approximation conditions previously derived and show that all of them fail by introducing a suitable oscillating Hamiltonian for a single quantum bit (qubit). Then, by evaluating the adiabatic condition in a rotated non-inertial frame, we show that all of these conditions, including the standard adiabatic condition, can correctly describe the adiabatic dynamics in the original frame, either far from resonance or at a resonant point. Moreover, we prove that this validation mechanism can be extended for general multi-particle quantum systems, establishing the conditions for the equivalence of the adiabatic behavior as described in inertial or non-inertial frames. In order to experimentally investigate our method, we consider a hyperfine qubit through a single trapped Ytterbium ion Yb, where the ion hyperfine energy levels are used as degrees of freedom of a two-level system. By monitoring the quantum evolution, we explicitly show the consistency of the adiabatic conditions in the non-inertial frame.

摘要

绝热近似的有效性条件是理解和预测量子动力学的有用工具。值得注意的是,振荡量子系统中的共振现象对绝热定理提出了挑战。在这种情况下,定量绝热条件应用中的不一致导致了一系列新的绝热性方法。在这里,我们采用不同的策略,通过将量子系统驱动到非惯性参考系来引入一种绝热近似的验证机制。更具体地说,我们首先考虑先前推导的几个相关绝热近似条件,并表明通过为单个量子比特(qubit)引入合适的振荡哈密顿量,所有这些条件都不成立。然后,通过在旋转的非惯性系中评估绝热条件,我们表明所有这些条件,包括标准绝热条件,都可以正确描述原始参考系中远离共振或在共振点处的绝热动力学。此外,我们证明这种验证机制可以扩展到一般的多粒子量子系统,建立了惯性系或非惯性系中描述的绝热行为等效的条件。为了通过实验研究我们的方法,我们考虑通过单个捕获的镱离子Yb实现的超精细量子比特,其中离子超精细能级用作两能级系统的自由度。通过监测量子演化,我们明确展示了非惯性系中绝热条件的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd54/6639347/1d5259709499/41598_2019_46754_Fig1_HTML.jpg

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