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强激光场物理学、非经典光态与量子信息科学。

Strong-laser-field physics, non-classical light states and quantum information science.

作者信息

Bhattacharya U, Lamprou Th, Maxwell A S, Ordóñez A, Pisanty E, Rivera-Dean J, Stammer P, Ciappina M F, Lewenstein M, Tzallas P

机构信息

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, Castelldefels (Barcelona) 08860, Spain.

Foundation for Research and Technology-Hellas, Institute of Electronic Structure & Laser, GR-70013 Heraklion (Crete), Greece.

出版信息

Rep Prog Phys. 2023 Aug 7;86(9). doi: 10.1088/1361-6633/acea31.

Abstract

Strong-laser-field physics is a research direction that relies on the use of high-power lasers and has led to fascinating achievements ranging from relativistic particle acceleration to attosecond science. On the other hand, quantum optics has been built on the use of low photon number sources and has opened the way for groundbreaking discoveries in quantum technology, advancing investigations ranging from fundamental tests of quantum theory to quantum information processing. Despite the tremendous progress, until recently these directions have remained disconnected. This is because the majority of the interactions in the strong-field limit have been successfully described by semi-classical approximations treating the electromagnetic field classically, as there was no need to include the quantum properties of the field to explain the observations. The link between strong-laser-field physics, quantum optics, and quantum information science has been developed in the recent past. Studies based on fully quantized and conditioning approaches have shown that intense laser-matter interactions can be used for the generation of controllable entangled and non-classical light states. These achievements open the way for a vast number of investigations stemming from the symbiosis of strong-laser-field physics, quantum optics, and quantum information science. Here, after an introduction to the fundamentals of these research directions, we report on the recent progress in the fully quantized description of intense laser-matter interaction and the methods that have been developed for the generation of non-classical light states and entangled states. Also, we discuss the future directions of non-classical light engineering using strong laser fields, and the potential applications in ultrafast and quantum information science.

摘要

强激光场物理是一个依赖于高功率激光的研究方向,已经取得了从相对论粒子加速到阿秒科学等令人着迷的成果。另一方面,量子光学建立在低光子数源的基础上,为量子技术的开创性发现开辟了道路,推动了从量子理论的基础测试到量子信息处理等方面的研究。尽管取得了巨大进展,但直到最近,这些方向仍然相互脱节。这是因为在强场极限下的大多数相互作用已经通过将电磁场经典化处理的半经典近似成功描述,因为无需考虑场的量子特性来解释观测结果。强激光场物理、量子光学和量子信息科学之间的联系在最近得到了发展。基于完全量子化和条件化方法的研究表明,强激光与物质的相互作用可用于产生可控的纠缠和非经典光态。这些成果为源于强激光场物理、量子光学和量子信息科学共生的大量研究开辟了道路。在此,在介绍这些研究方向的基础之后,我们报告强激光与物质相互作用的完全量子化描述的最新进展以及为产生非经典光态和纠缠态而开发的方法。此外,我们讨论了利用强激光场进行非经典光工程的未来方向以及在超快和量子信息科学中的潜在应用。

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