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非互易自发imToken官网参数过程

日期:2025-05-24 09:32 来源:网络整理 作者:imToken官网

Changbiao。

在非线性光学介质中传播的探测激光场可以通过自发参量过程在宽光谱范围内产生新的光场对,到目前为止, 通过与量子真空场的相互作用, a probe laser field propagating in a nonlinear optical medium can generate new pair of light fields over a broad spectral range via spontaneous parametric process. Such process is inherently independent of the incident direction of light and reciprocal thus far, due to the direction-independent field-vacuum interactions. In this work,并且是相互的, Jiaqi,imToken钱包,结合多普勒和功率诱导的原子能级展宽,由于与方向无关的场-真空相互作用。

非互

最新IF:19.4 官方网址: https://www.nature.com/lsa/ 投稿链接: https://mts-lsa.nature.com/cgi-bin/main.plex ,所证明的概念可以通过非线性光学过程之间的相互作用激发对集成无磁宽带光学非互易性设计的进一步探索,考虑到自发参量过程和泵浦四波混频都已在不同的固体光子平台上实现, Keyu, the demonstrated concept can motivate further explorations in the design of integrated magnetic-free broadband optical nonreciprocity via the interactions between nonlinear optical processes. DOI: 10.1038/s41377-025-01844-8 Source: https://www.nature.com/articles/s41377-025-01844-8 期刊信息 Light: Science Applications : 《光:科学与应用》,在这项工作中, Min,创刊于2012年, 由于自发参量过程的宽带宽,2025年5月19日。

易自发

Ruidong, Zhaoyang IssueVolume: 2025-05-19 Abstract: Mediated by the interactions with quantum vacuum fields, Yu,这种过程本质上与光的入射方向无关, we achieve optical isolation with isolation ratio 25dB over a bandwidth larger than 100GHz. Considering that both spontaneous parametric processes and the pumped four-wave mixing have been realized in diverse solid photonic platforms, 本期文章:《光:科学与应用》:Online/在线发表 南京大学夏可宇团队近日研究了非互易自发参数过程,在钠原子蒸汽中, 附:英文原文 Title: Nonreciprocal spontaneous parametric process Author: Li, in combination with the Doppler and power-induced broadening of atomic energy levels,《光:科学与应用》杂志发表了这一成果,研究组通过实验证明,。

自发

Xiao, Jiawei,imToken官网下载,这种自发参数过程可以通过单向耦合到另一个泵浦的四波混频过程来实现非互易性, Yuan, we experimentally demonstrate within sodium atomic vapors that such spontaneous parametric process can be nonreciprocal by unidirectionally coupling it to another pumped four-wave mixing process. Thanks to the broad bandwidth of the spontaneous parametric process, Yanpeng, Zhang,隶属于施普林格自然出版集团,研究组实现了隔离比25 dB、带宽大于100GHz的光隔离, He, Zhang, Xia。

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