Generation of multimode squeezing and entanglement in the space and frequency domains : A general “supermode” approach

B. Chalopin, G. Patera, G. D. de Valcárcel, C. Fabre, N. Treps
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Abstract

Optical parametric oscillators (OPO) have been extensively used in the continuous variable quantum optics community as a resource to produce non-classical states of light, including squeezed states or entangled beams. They have been widely studied, theoretically and experimentally, in the single mode case, and have found many applications to quantum information protocols and high sensitivity optical measurements. However, as the complexity of quantum information protocols increases, the need for multiplexed quantum channels has emerged, which require the use of multimode non-classical states of light.
空间和频域多模压缩和纠缠的产生:一种通用的“超模”方法
光学参量振荡器(OPO)作为一种产生非经典光态的资源,在连续可变量子光学领域得到了广泛的应用,包括压缩态或纠缠光束。它们已经在单模情况下进行了广泛的理论和实验研究,并在量子信息协议和高灵敏度光学测量中找到了许多应用。然而,随着量子信息协议复杂性的增加,对多路量子信道的需求已经出现,这需要使用光的多模非经典状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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