Background Focusing with a 4 π parabolic mirror allows for concentrating light fro'/> Focusing characteristics of a 4 <Emphasis Type='Italic'>π</Emphasis>parabolic mirror light-matter interface
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Focusing characteristics of a 4 πparabolic mirror light-matter interface

机译:4个π抛物面镜光-物质界面的聚焦特性

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Abstract Background Focusing with a 4 π parabolic mirror allows for concentrating light from nearly the complete solid angle, whereas focusing with a single microscope objective limits the angle cone used for focusing to half solid angle at maximum. Increasing the solid angle by using deep parabolic mirrors comes at the cost of adding more complexity to the mirror’s fabrication process and might introduce errors that reduce the focusing quality. Methods To determine these errors, we experimentally examine the focusing properties of a 4 π parabolic mirror that was produced by single-point diamond turning. The properties are characterized with a single 174Yb + ion as a mobile point scatterer. The ion is trapped in a vacuum environment with a movable high optical access Paul trap. Results We demonstrate an effective focal spot size of 209 nm in lateral and 551 nm in axial direction. Such tight focusing allows us to build an efficient light-matter interface. Conclusion Our findings agree with numerical simulations incorporating a finite ion temperature and interferometrically measured wavefront aberrations induced by the parabolic mirror. We point at further technological improvements and discuss the general scope of applications of a 4 π parabolic mirror.
机译: Abstract Background 将焦点对准4个π抛物面反射镜可以使光线集中从几乎整个立体角开始,而使用单个显微镜物镜聚焦则将用于聚焦的锥角最大限制为一半立体角。通过使用深抛物面反射镜来增加立体角,其代价是增加了反射镜的制造过程的复杂性,并且可能会引入会降低聚焦质量的误差。 方法 为确定这些误差,我们通过实验检查了由单点金刚石车削产生的4个π抛物面镜的聚焦特性。用单个 174 Yb + 离子作为移动点散射体来表征其特性。离子通过可移动的高光学通道Paul阱被捕获在真空环境中。 结果 我们演示了一个有效的焦点横向尺寸为209 nm,轴向尺寸为551 nm。这种紧密的聚焦使我们能够建立有效的光-质界面。 结论 我们的发现与包含有限元的数值模拟相符。离子温度和由抛物面反射镜产生的干涉测量波前像差。我们指出了进一步的技术改进,并讨论了4个π抛物面反射镜的一般应用范围。

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