论文标题

原子能的路线图:艺术状态和透视图

Roadmap on Atomtronics: State of the art and perspective

论文作者

Amico, L., Boshier, M., Birkl, G., Minguzzi, A., Miniatura, C., Kwek, L. -C., Aghamalyan, D., Ahufinger, V., Anderson, D., Andrei, N., Arnold, A. S., Baker, M., Bell, T. A., Bland, T., Brantut, J. P., Cassettari, D., Chetcuti, W. J., Chevy, F., Citro, R., De Palo, S., Dumke, R., Edwards, M., Folman, R., Fortagh, J., Gardiner, S. A., Garraway, B. M., Gauthier, G., Günther, A., Haug, T., Hufnagel, C., Keil, M., von Klitzing, W., Ireland, P., Lebrat, M., Li, W., Longchambon, L., Mompart, J., Morsch, O., Naldesi, P., Neely, T. W., Olshanii, M., Orignac, E., Pandey, S., Pérez-Obiol, A., Perrin, H., Piroli, L., Polo, J., Pritchard, A. L., Proukakis, N. P., Rylands, C., Rubinsztein-Dunlop, H., Scazza, F., Stringari, S., Tosto, F., Trombettoni, A., Victorin, N., Wilkowski, D., Xhani, K., Yakimenko, A.

论文摘要

原子能处理通过具有不同形状和强度的磁性或激光产生的指南操纵的超冷原子的物质波电路。这样,可以构建新型的量子网络,其中连贯的流体与原子和分子物理学界开发的专业知识有关。特别是,可以访问具有增强精度,控制和灵活性的量子设备。随之而来的是,还可以开发出在相干电流流程上利用的新量子模拟器和模拟器。在这里,我们调查了基于原子能的量子技术的景观,并在不久的将来为该领域绘制了路线图。我们回顾了一些在Matter-Wave电路设计和原子芯片中取得的最新进展。 Atomtronic网络被部署为有前途的平台,用于探测具有新角度和新扭曲的多体物理学。后者可以在平衡和非平衡情况下进行。通过新的晶状体研究了介质物理学中的许多相关问题,例如费米原子或骨原子的电路中的量子运输。我们总结了一些原子量子设备和传感器。最后,我们讨论了碱性冰河和瑞德伯格原子,作为实现具有特殊特征的原子电路的潜在平台。

Atomtronics deals with matter-wave circuits of ultra-cold atoms manipulated through magnetic or laser-generated guides with different shapes and intensities. In this way, new types of quantum networks can be constructed, in which coherent fluids are controlled with the know-how developed in the atomic and molecular physics community. In particular, quantum devices with enhanced precision, control and flexibility of their operating conditions can be accessed. Concomitantly, new quantum simulators and emulators harnessing on the coherent current flows can also be developed. Here, we survey the landscape of atomtronics-enabled quantum technology and draw a roadmap for the field in the near future. We review some of the latest progresses achieved in matter-wave circuits design and atom-chips. Atomtronic networks are deployed as promising platforms for probing many-body physics with a new angle and a new twist. The latter can be done both at the level of equilibrium and non-equilibrium situations. Numerous relevant problems in mesoscopic physics, like persistent currents and quantum transport in circuits of fermionic or bosonic atoms, are studied through a new lens. We summarize some of the atomtronics quantum devices and sensors. Finally, we discuss alkali-earth and Rydberg atoms as potential platforms for the realization of atomtronic circuits with special features.

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