利用双级联原子系统中四波混频的光学涡旋有效转移

IF 2 3区 物理与天体物理 Q3 OPTICS
Wen-Long Xiong, Hong Zhang, Yi-Hao Wu, Xiao-Qiu Qi, Ai-Xi Chen
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引用次数: 0

摘要

研究了四能级双级联冷原子系综中光学涡旋的相干转移,展示了轨道角动量通过四波混频过程从入射涡旋探测场转移到产生的信号场。结果表明,在没有单光子失谐的情况下,在相位匹配条件下,传输效率限制在25%。然而,在单光子失谐存在的情况下,光旋涡在探针和信号场之间的转换效率可以显著提高。有趣的是,单光子失谐的存在可以提高而不是降低光涡旋的传输效率。进一步研究了控制场对入射涡流探头与信号场形成的复合涡流的影响。研究结果表明,调整控制场的强度可以精确控制复合涡的强度和相型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efficient transfer of optical vortices utilizing four-wave mixing in a double-cascade atomic system

The coherent transfer of optical vortices in a four-level double-cascade cold atomic ensemble is examined, showcasing the transfer of orbital angular momentum from the incident vortex probe field to the generated signal field through the four-wave mixing process. Results indicate that, without single-photon detuning, the transfer efficiency is limited to 25% under phase matching conditions. However, in the presence of single-photon detuning, the conversion efficiency of optical vortices between the probe and signal fields can be significantly increased. Interestingly, the presence of single-photon detuning can enhance, rather than diminish, the transfer efficiency of optical vortices. Furthermore, the impact of the control field on the composite vortex formed by the incident vortex probe and signal fields was investigated. Findings suggest that adjusting the strength of the control field allows for precise control over the strength and phase patterns of the composite vortex.

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来源期刊
Applied Physics B
Applied Physics B 物理-光学
CiteScore
4.00
自引率
4.80%
发文量
202
审稿时长
3.0 months
期刊介绍: Features publication of experimental and theoretical investigations in applied physics Offers invited reviews in addition to regular papers Coverage includes laser physics, linear and nonlinear optics, ultrafast phenomena, photonic devices, optical and laser materials, quantum optics, laser spectroscopy of atoms, molecules and clusters, and more 94% of authors who answered a survey reported that they would definitely publish or probably publish in the journal again Publishing essential research results in two of the most important areas of applied physics, both Applied Physics sections figure among the top most cited journals in this field. In addition to regular papers Applied Physics B: Lasers and Optics features invited reviews. Fields of topical interest are covered by feature issues. The journal also includes a rapid communication section for the speedy publication of important and particularly interesting results.
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