论文标题

超电原子的元图全息光学陷阱

Metasurface Holographic Optical Traps for Ultracold Atoms

论文作者

Huang, Xiaoyan, Yuan, Weijun, Holman, Aaron, Kwon, Minho, Masson, Stuart J., Gutierrez-Jauregui, Ricardo, Asenjo-Garcia, Ana, Will, Sebastian, Yu, Nanfang

论文摘要

我们提出跨表面全息图作为一个新型平台,以生成具有高富度,效率和热稳定性的冷原子的光学陷阱阵列。我们开发了设计和制造方法,以创建基于二氧化钛的介电,仅相位的跨表面全息图。我们在实验上证明了各种几何形状的光学陷阱阵列,包括尺寸为1D到3D的周期性和上的构型构型,以及最多几百个陷阱位点的数量。我们以产生的陷阱的定位准确性,大小和强度均匀性以及介电元面的功能处理能力来表征全息元信息的性能。我们提出的平台具有巨大的潜力,可以实现量子多体物理学以及量子模拟和计算任务的基础研究。紧凑的外形效果,被动性,良好的功率处理能力以及产生高质量的大型阵列的可扩展性,还使元图平台独特地适合于实现基于冷原子的野外剥离设备和系统。

We propose metasurface holograms as a novel platform to generate optical trap arrays for cold atoms with high fidelity, efficiency, and thermal stability. We developed design and fabrication methodologies to create dielectric, phase-only metasurface holograms based on titanium dioxide. We experimentally demonstrated optical trap arrays of various geometries, including periodic and aperiodic configurations with dimensions ranging from 1D to 3D and the number of trap sites up to a few hundred. We characterized the performance of the holographic metasurfaces in terms of the positioning accuracy, size and intensity uniformity of the generated traps, and power handling capability of the dielectric metasurfaces. Our proposed platform has great potential for enabling fundamental studies of quantum many-body physics, and quantum simulation and computation tasks. The compact form factor, passive nature, good power handling capability, and scalability of generating high-quality, large-scale arrays also make the metasurface platform uniquely suitable for realizing field-deployable devices and systems based on cold atoms.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源