Femtosecond high Average-power Micro-joule Extreme-Ultraviolet Source (FAMEUS)
Femtosecond high Average-power Micro-joule Extreme-Ultraviolet Source (FAMEUS)
批准号:
565914-2021
负责人:
Ozaki, Tsuneyuki
金额:
$11.25万
依托单位国家:
加拿大
项目类别:
Alliance Grants
财政年份:
2021
资助国家:
加拿大
项目状态:
已结题
起止时间:
2021-01-01 至 2022-12-31
中文摘要
目前只在价值数十亿美元的自由电子激光设施中才能发现的强飞秒极端紫外线(XUV)源,正在物理、化学、量子技术、生物和医学领域开辟新的机遇。在这个项目中,我们建议将T.Ozaki的研究小组(INRS-EMT)的发现应用于激光消融介质中的高次谐波产生,以将这种强烈的XUV源的尺寸和成本降低到更适度的实验室规模(适合标准的大学实验室,总成本为100万英镑),从而显著提高此类源的可及性。特别是,我们将研究强而高效的谐振谐波(RH)的使用,其效率比传统气体谐波高一个数量级。这些研究的结果将被用来开发一种独特而紧凑的飞秒高平均功率(MW级)微焦耳(>;1微焦耳/脉冲)极紫外源(FAMEUS),或法语中的“la SOURCE Femtoseconde d‘UV Exrémeàhaant puhance Moyenne etàhateénergie(FUMé)”。我们将与Null-Cycle公司合作开发一种能量高、波长可调的可见光和近红外飞秒激光器,用它来研究各种目标的相对湿度。这项研究将提供数据,使我们能够设计出平均功率更高的>;10 mW(Fameus+)。通过这个项目,Null-Cycle Inc.还将获得专业知识,并获得将Fameus商业化的第一选择,这应该会吸引科技界的极大兴趣。此外,我们将与Axis Photonique Inc.合作,为Fameus开发一个终端站,并使用它来表征他们的新XUV相机。使用Fameus终端站,Axis Photonique将能够在他们的相机上向潜在客户提供与FEL相关的实验的具体数据,使他们和他们的XUV相机与竞争对手相比具有显著的竞争优势,从而使公司得以发展。
英文摘要
Intense, femtosecond extreme ultraviolet (XUV) sources, currently found only at billion-dollar free-electron laser facilities, are opening new opportunities in physics, chemistry, quantum technology, biology and medicine. In this project, we propose to apply the findings by T. Ozaki's group (INRS-EMT) in high-order harmonic generation from laser ablation media, to reduce the size and cost of such intense XUV sources to a more modest laboratory scale (fitting in a standard university laboratory, with < $1 million total cost), thereby significantly increasing the accessibility of such sources. In particular, we will study the use of intense and highly efficient resonant harmonics (RH), with efficiencies that are an order of magnitude higher than conventional gas harmonics. The results of such studies will be used to develop a unique and compact Femtosecond high Average-power (mW-class) Micro-joule (> 1 µJ/pulse) Extreme-Ultraviolet Source (FAMEUS), or « la source Femtoseconde d'Ultraviolet extrême à haute puissance Moyenne et à haute Énergie (FUMÉ) » in French. We will work with few-cycle Inc. to develop an energetic, wavelength-tunable femtosecond laser in the visible and near-infrared regime, with which we will study RH from various targets. This study will provide data that will allow us to design FAMEUS with an even higher average power of > 10 mW (FAMEUS+). Through this project, few-cycle Inc. will also gain the expertise and be given the first option of license to commercialize FAMEUS, which should attract significant interest from the scientific and technological community. Further, we will work with Axis Photonique Inc. to develop an endstation for FAMEUS and use it to characterize their new XUV camera. Using the FAMEUS endstation, Axis Photonique will be able to provide to potential customers concrete data on their camera on experiments relative to FELs, giving them and their XUV camera a significant competitive advantage compared with their competitors, thus allowing the company to grow.
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