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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research >Narrow linewidth operation of the RILIS titanium: Sapphire laser at ISOLDE/CERN
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Narrow linewidth operation of the RILIS titanium: Sapphire laser at ISOLDE/CERN

机译:RILIS钛的窄线宽操作:ISOLDE / CERN的蓝宝石激光器

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A narrow linewidth operating mode for the Ti: sapphire laser of the CERN ISOLDE Resonance Ionization Laser Ion Source (RILIS) has been developed. This satisfies the laser requirements for the programme of in-source resonance ionization spectroscopy measurements and improves the selectivity for isomer separation using RILIS. A linewidth reduction from typically 10 GHz down to 1 GHz was achieved by the intra-cavity insertion of a second (thick) Fabry-Perot etalon. Reliable operation during a laser scan was achieved through motorized control of the tilt angle of each etalon. A scanning, stabilization and mode cleaning procedure was developed and implemented in LabVIEW. The narrow linewidth operation was confirmed in a high resolution spectroscopy study of francium isotopes by the Collinear Resonance Ionization Spectroscopy experiment. The resulting laser scans demonstrate the suitability of the laser, in terms of linewidth, spectral purity and stability for high resolution in-source spectroscopy and isomer selective ionization using the RILIS.
机译:已经开发出CERN ISOLDE共振电离激光离子源(RILIS)的Ti:蓝宝石激光器的窄线宽工作模式。这满足了源内共振电离光谱测量程序的激光要求,并提高了使用RILIS进行异构体分离的选择性。通过在腔内插入第二个(厚)Fabry-Perot标准具,可以将线宽从通常的10 GHz降低到1 GHz。通过电动控制每个标准具的倾斜角度,可以在激光扫描过程中实现可靠的操作。扫描,稳定和模式清洁程序已开发并在LabVIEW中实现。通过共线性共振电离光谱实验,在is同位素的高分辨率光谱研究中证实了窄线宽操作。所得的激光扫描证明了激光的适用性,包括线宽,光谱纯度和使用RILIS进行高分辨率源内光谱分析和异构体选择性电离的稳定性。

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