Leong Wui Seng, Xin Mingjie, Chen Zilong, Chai Shijie, Wang Yu, Lan Shau-Yu
Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.
Nat Commun. 2020 Oct 20;11(1):5295. doi: 10.1038/s41467-020-19030-2.
Quantum engineering using photonic structures offer new capabilities for atom-photon interactions for quantum optics and atomic physics, which could eventually lead to integrated quantum devices. Despite the rapid progress in the variety of structures, coherent excitation of the motional states of atoms in a photonic waveguide using guided modes has yet to be demonstrated. Here, we use the waveguide mode of a hollow-core photonic crystal fibre to manipulate the mechanical Fock states of single atoms in a harmonic potential inside the fibre. We create a large array of Schrödinger cat states, a quintessential feature of quantum physics and a key element in quantum information processing and metrology, of approximately 15000 atoms along the fibre by entangling the electronic state with the coherent harmonic oscillator state of each individual atom. Our results provide a useful step for quantum information and simulation with a wide range of photonic waveguide systems.
利用光子结构的量子工程为量子光学和原子物理学中的原子 - 光子相互作用提供了新的能力,这最终可能导致集成量子器件的出现。尽管在各种结构方面取得了快速进展,但利用导模对光子波导中原子的运动状态进行相干激发尚未得到证实。在这里,我们使用空心光子晶体光纤的波导模式来操纵光纤内部简谐势中单个原子的机械福克态。我们通过将电子态与每个单个原子的相干简谐振子态纠缠,沿着光纤创建了大约15000个原子的大量薛定谔猫态阵列,这是量子物理学的一个典型特征,也是量子信息处理和计量学中的关键要素。我们的结果为使用各种光子波导系统进行量子信息和模拟提供了有益的一步。