An application scheme of the digital signal in an atom chip is proposed.
通过分析和计算不同谐波分量与原子相互作用产生不同的势场,发现可以将其叠加在一起形成原子囚禁势,提出了数字信号在原子芯片中的应用方案。
With the fast development and perfecting of laser cooling, trapping and manipulating of neutral atoms as well as microelectric fabrication techniques with micrometer and nanometer scale, a new branch subject of atom optics, "integrated atom optics and its atom chips", has been formed.
随着原子激光冷却、囚禁与操控技术以及微米、纳米微电子制作技术的快速发展与不断完善,一个新兴的原子光学分支学科—“集成原子光学及其原子芯片”正在形成。