Felicetti S, Douce T, Romero G, Milman P, Solano E
Department of Physical Chemistry, University of the Basque Country UPV/EHU, Apartado 644, E-48080 Bilbao, Spain.
Laboratoire Matériaux et Phénomènes Quantiques, Université Paris Diderot, CNRS UMR 7162, 75013, Paris, France.
Sci Rep. 2015 Jul 8;5:11818. doi: 10.1038/srep11818.
Reaching the strong coupling regime of light-matter interaction has led to an impressive development in fundamental quantum physics and applications to quantum information processing. Latests advances in different quantum technologies, like superconducting circuits or semiconductor quantum wells, show that the ultrastrong coupling regime (USC) can also be achieved, where novel physical phenomena and potential computational benefits have been predicted. Nevertheless, the lack of effective decoupling mechanism in this regime has so far hindered control and measurement processes. Here, we propose a method based on parity symmetry conservation that allows for the generation and reconstruction of arbitrary states in the ultrastrong coupling regime of light-matter interactions. Our protocol requires minimal external resources by making use of the coupling between the USC system and an ancillary two-level quantum system.
实现光与物质相互作用的强耦合 regime 已在基础量子物理学以及量子信息处理应用方面带来了令人瞩目的发展。超导电路或半导体量子阱等不同量子技术的最新进展表明,超强耦合 regime(USC)也能够实现,在该 regime 中已经预测到了新颖的物理现象和潜在的计算优势。然而,迄今为止,此 regime 中缺乏有效的解耦机制阻碍了控制和测量过程。在此,我们提出一种基于宇称对称性守恒的方法,该方法允许在光与物质相互作用的超强耦合 regime 中生成和重构任意态。我们的协议通过利用 USC 系统与一个辅助二能级量子系统之间的耦合,所需的外部资源最少。