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We study the single-photon scattering along a one-dimensional cavity array with two distant two-level atoms in a supercavity,which aims to simulate a recent x-ray experiment [Nature 482,199(2012)].Without introducing dissipation,we find that when one atom is exactly located at a node of a mode of the supercavity and the other is at the antinode of that mode,no splitting of the reflectivity peak can appear.Nevertheless,the atom at the node significantly changes the positions of the reflectivity valleys.On the other hand,when the atom is shifted a little from the exact node,then the splitting can appear.We also explain these results with an analysis based on the general formal scattering theory.Our result implies the importance of non-resonant modes of the supercavity in our problem. 相似文献
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The stopping time of a one-dimensional bounded classical random walk(RW) is defined as the number of steps taken by a random walker to arrive at a fixed boundary for the first time.A quantum walk(QW) is a non-trivial generalization of RW,and has attracted a great deal of interest from researchers working in quantum physics and quantum information.In this paper,we develop a method to calculate the stopping time for a one-dimensional QW.Using our method,we further compare the properties of stopping time for QW and RW.We find that the mean value of the stopping time is the same for both of these problems.However,for short times,the probability for a walker performing a QW to arrive at the boundary is larger than that for a RW.This means that,although the mean stopping time of a quantum and classical walker are the same,the quantum walker has a greater probability of arriving at the boundary earlier than the classical walker. 相似文献
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2022年诺贝尔物理学奖授予法国、美国和奥地利的三位科学家阿兰·阿斯佩、约翰·弗朗西斯·克劳泽和安东·塞林格,以表彰他们利用纠缠光子实验检验贝尔不等式以及在开拓量子信息科学方面做出的卓越贡献。贝尔不等式在量子力学基本问题和量子信息研究中都有着不可或缺的地位,它的违背直接揭示了量子力学的基本特征——量子非定域性。文章在讲清楚基本科学概念的基础上,简要介绍了贝尔不等式理论的建立及验证其违背的实验研究的科学历程。为了解决EPR佯谬,基于玻姆的定域隐变量理论,约翰·贝尔提出了关于纠缠态上的关联测量满足的基本不等式——贝尔不等式。他还发现,量子力学关于关联的计算结果违背贝尔不等式,可以在类空距离上展现出“鬼魅”的长程量子关联。这种长程关联看似有超光速的“超距作用”,但这只是人们明显或潜在地使用了“波包塌缩假设”。EPR文章明显地采用这个假设推断远方客体共存的物理实在要素,由此对量子力学完备性提出质疑。文章评述了阿斯佩、克劳泽和塞林格荣获诺贝尔物理学奖的关于贝尔不等式违背的判定性实验,介绍了华人物理学家在纠缠态和贝尔不等式研究方面的基础性贡献,包括早年吴健雄利用正负电子湮灭产生EPR光子的先驱性实验,李政道和杨振宁关于产生两个中性K介子K0—${\\rm{\\bar K}}$0形成EPR态的建议,史砚华、欧泽宇、彭堃墀等利用非线性光学晶体,包括陈创天等人发现的非线性光学晶体,产生纠缠光子对的原创性工作。 相似文献
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