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Dynamic adaptive X-ray optics. Part I. Time-resolved optical metrology investigation of the bending behaviour of piezoelectric bimorph deformable X-ray mirrors

机译:动态自适应X射线光学器件。第一部分。时间分辨光学计量学研究压电双压电晶片可变形X射线镜的弯曲行为

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摘要

Piezoelectric bimorph deformable mirrors (‘bimorphs’) are routinely used on many synchrotron and free-electron laser beamlines to provide active variation in the size and shape of the X-ray beam. However, the time-domain potential of such optics has never been fully exploited. For the first time, the fast dynamic bending response of bimorphs is investigated here using Fizeau interferometry. Automated scripts for acquisition and analysis were developed to collect Fizeau data at a rate of 0.1 Hz to record dynamic changes in the optical surface as voltages were applied to the electrodes of the piezoelectric actuators. It is demonstrated that residual drift in the tangential radius of curvature of a bimorph can be significantly reduced using enhanced opto-mechanical holders and a fast programmable high-voltage power supply. Further improvements are achieved by applying small opposing voltages to compensate for piezoelectric creep. The present study shows that bimorphs can truly be used as high-speed adaptive optics for the X-ray domain, even without closed-loop feedback correction. This opens the possibility for relatively simple real-time tuning of the profile of X-ray bimorphs. Part II of this study [Alcock, Nistea, Signorato, Owen, Axford, Sutter, Foster & Sawhney (2019), J. Synchrotron Rad. >26, 45–51] builds upon these results and demonstrates how bimorphs can rapidly provide customisable sizes and shapes of synchrotron X-ray beams, specifically tailored to suit the experimental samples being investigated.
机译:压电双压电晶片可变形反射镜(“双压电晶片”)通常用于许多同步加速器和自由电子激光束线上,以主动改变X射线束的大小和形状。但是,这种光学器件的时域潜力尚未得到充分利用。首次使用菲索(Fizeau)干涉测量法研究了双压电晶片的快速动态弯曲响应。开发了用于采集和分析的自动化脚本,以0.1 Hz的速率收集Fizeau数据,以记录在将电压施加到压电致动器的电极上时光学表面的动态变化。结果表明,使用增强型的光机械支架和快速可编程的高压电源,可以大大减少双压电晶片的切向曲率半径中的残余漂移。通过施加较小的反向电压来补偿压电蠕变,可以实现进一步的改进。本研究表明,即使没有闭环反馈校正,双压电晶片也可以真正用作X射线域的高速自适应光学器件。这为X射线双压电晶片的轮廓的相对简单的实时调整打开了可能性。本研究的第二部分[Alcock,Nistea,Signorato,Owen,Axford,Sutter,Foster和Sawhney(2019),J。Synchrotron Rad。 > 26 ,45–51]建立在这些结果的基础上,展示了双压电晶片如何快速提供可定制大小和形状的同步加速器X射线束,特别适合于所研究的实验样品。

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