《Laser beam shaping for enhanced Zero-Group Velocity Lamb modes generation》

  • 来源专题:水声领域信息监测
  • 发布时间:2016-11-14
  • Optimization of Lamb modes induced by laser can be achieved by adjusting the spatial source distribution to the mode wavelength (λ). The excitability of Zero-Group Velocity (ZGV) resonances in isotropic plates is investigated both theoretically and experimentally for axially symmetric sources. Optimal parameters and amplitude gains are derived analytically for spot and annular sources of either Gaussian or rectangular energy profiles. For a Gaussian spot source, the optimal radius is found to be λ ZGV/π. Annular sources increase the amplitude by at least a factor of 3 compared to the optimal Gaussian source. Rectangular energy profiles provide higher gain than Gaussian ones. These predictions are confirmed by semi-analytical simulation of the thermoelastic generation of Lamb waves, including the effect of material attenuation. Experimentally, Gaussian ring sources of controlled width and radius are produced with an axicon-lens system. Measured optimal geometric parameters obtained for Gaussian and annular beams are in good agreement with theoretical predictions. A ZGV resonance amplification factor of 2.1 is obtained with the Gaussian ring. Such source should facilitate the inspection of highly attenuating plates made of low ablation threshold materials like composites.

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(2014 - 2018)Waves Random Media (1991 - 2004) Volume number: Issue number (if known): Article or page number: Nanotechnology Purpose-led Publishing is a coalition of three not-for-profit publishers in the field of physical sciences: AIP Publishing, the American Physical Society and IOP Publishing. Together, as publishers that will always put purpose above profit, we have defined a set of industry standards that underpin high-quality, ethical scholarly communications. We are proudly declaring that science is our only shareholder. ACCEPTED MANUSCRIPT Antimony-assisted controlled growth of PtSe2 ribbon arrays for enhanced hydrogen evolution reaction Tian Li1, Liusi Yang2, Guangjie Zhang3, Jiaying Zhang4, Jingqi Feng1, Xinying Peng4, Peng Xu5, Shuli He2 and Donglin Ma1 Accepted Manuscript online 11 July 2024 ? © 2024 IOP Publishing Ltd What is an Accepted Manuscript? DOI 10.1088/1361-6528/ad61eb Download Accepted Manuscript PDF Figures Skip to each figure in the article Tables Skip to each table in the article References Citations Article data Skip to each data item in the article What is article data? Open science Article metrics Submit Submit to this Journal Permissions Get permission to re-use this article Share this article Article and author information Author e-mailsmadonglin@cnu.edu.cn Author affiliations1 department of physics, Capital Normal University, 105 W.3rd Ring Rd North, Haidian, Beijing, Beijing, 100037, CHINA 2 Capital Normal University, 105 W.3rd Ring Rd North, Haidian, Beijing, 100037, CHINA 3 National Center for Nanoscience and Technology, No.11 ZhongGuanCun BeiYiTiao, Haidian District, 100190, CHINA 4 Capital Normal University, 105 W.3rd Ring Rd North, Haidian, Beijing, Beijing, 100037, CHINA 5 National Center for Nanoscience and Nanotechnology, No.11 ZhongGuanCun BeiYiTiao, Beijing, 100190, CHINA ORCID iDsTian Li https://orcid.org/0000-0002-9687-2289Guangjie Zhang https://orcid.org/0000-0003-0498-3545Jiaying Zhang https://orcid.org/0009-0000-1996-0966Donglin Ma https://orcid.org/0000-0002-0536-1871 Dates Received 19 December 2023 Revised 11 March 2024 Accepted 11 July 2024 Accepted Manuscript online 11 July 2024 Journal RSS Sign up for new issue notifications 10.1088/1361-6528/ad61eb Abstract In this study, we report the successful synthesis of few-layer parallel PtSe2 ribbons on an Au foil employing a surface melting strategy via the chemical vapor deposition (CVD) growth method at 650℃. The controlled formation of parallel ribbons was directed by the Au steps generated through antimony treatment. These ribbons exhibit an average length of exceeding 100 μm and a width of approximately 100 nm across a substantial area. Electrocatalysis measurements showcase the catalytic performance of PtSe2 ribbons grown on Au foil, which can be further augmented through subsequent oxidation treatment. This investigation introduces an effective growth method for few-layer ribbons at low temperatures and broadens the scope of employing the substrate-guided strategies for the synthesis of one-dimensional materials. Additionally, it underscores the potential of PtSe2 ribbons as an electrocatalyst for hydrogen evolution. Export citation and abstract BibTeX RIS During the embargo period (the 12 month period from the publication of the Version of Record of this article), the Accepted Manuscript is fully protected by copyright and cannot be reused or reposted elsewhere. As the Version of Record of this article is going to be / has been published on a subscription basis, this Accepted Manuscript will be available for reuse under a CC BY-NC-ND 3.0 licence after the 12 month embargo period. After the embargo period, everyone is permitted to use copy and redistribute this article for non-commercial purposes only, provided that they adhere to all the terms of the licence https://creativecommons.org/licences/by-nc-nd/3.0 Although reasonable endeavours have been taken to obtain all necessary permissions from third parties to include their copyrighted content within this article, their full citation and copyright line may not be present in this Accepted Manuscript version. Before using any content from this article, please refer to the Version of Record on IOPscience once published for full citation and copyright details, as permissions may be required. 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