Double-helix singularity and vortex–antivortex annihilation in space-time helical pulses

IF 6.5 2区 物理与天体物理 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Nanophotonics Pub Date : 2024-10-31 DOI:10.1515/nanoph-2024-0480
Shuai Shi, Ren Wang, Minhui Xiong, Qinyu Zhou, Bing-Zhong Wang, Yijie Shen
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Abstract

Topological structures reveal the hidden secrets and beauty in nature, such as the double helix in DNA, whilst, the manipulation of which in physical fields, especially in ultrafast structured light, draw booming attention. Here we introduce a new family of spatiotemporal light fields, i.e. helical pulses, carrying sophisticated double-helix singularities in its electromagnetic topological structures. The helical pulses were solved from Maxwell’s equation as chiral extensions of toroidal light pulses but with controlled angular momentum dependence. We unveil that the double helix singularities can maintain their topological invariance during propagation and the field exhibits paired generation and annihilation of vortices and antivortices in ultrafast space-time, so as to be potential information carriers beating previous conventional vortex structured light.
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时空螺旋脉冲中的双螺旋奇点和涡旋-反涡旋湮灭
拓扑结构揭示了大自然中隐藏的秘密和美,如 DNA 中的双螺旋结构,同时,在物理领域,尤其是在超快结构光中对其的操纵也引起了广泛关注。在此,我们介绍一种新的时空光场系列,即螺旋脉冲,其电磁拓扑结构中包含复杂的双螺旋奇异性。根据麦克斯韦方程,螺旋脉冲是环形光脉冲的手性扩展,但具有受控角动量依赖性。我们揭示了双螺旋奇点在传播过程中可以保持拓扑不变性,并且该场在超快时空中显示出涡旋和反涡旋的成对生成和湮灭,从而成为击败以往传统涡旋结构光的潜在信息载体。
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来源期刊
Nanophotonics
Nanophotonics NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
13.50
自引率
6.70%
发文量
358
审稿时长
7 weeks
期刊介绍: Nanophotonics, published in collaboration with Sciencewise, is a prestigious journal that showcases recent international research results, notable advancements in the field, and innovative applications. It is regarded as one of the leading publications in the realm of nanophotonics and encompasses a range of article types including research articles, selectively invited reviews, letters, and perspectives. The journal specifically delves into the study of photon interaction with nano-structures, such as carbon nano-tubes, nano metal particles, nano crystals, semiconductor nano dots, photonic crystals, tissue, and DNA. It offers comprehensive coverage of the most up-to-date discoveries, making it an essential resource for physicists, engineers, and material scientists.
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