Max-Born-Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Max-Born-Straße 2A, 12489 Berlin, Germany.
The Space Sciences Laboratory, University of California, Berkeley, California 94720, USA.
J Chem Phys. 2017 Jul 7;147(1):013919. doi: 10.1063/1.4981126.
A new ion-ion coincidence imaging spectrometer based on a pixelated complementary metal-oxide-semiconductor detector has been developed for the investigation of molecular ionization and fragmentation processes in strong laser fields. Used as a part of a velocity map imaging spectrometer, the detection system is comprised of a set of microchannel plates and a Timepix detector. A fast time-to-digital converter (TDC) is used to enhance the ion time-of-flight resolution by correlating timestamps registered separately by the Timepix detector and the TDC. In addition, sub-pixel spatial resolution (<6 μm) is achieved by the use of a center-of-mass centroiding algorithm. This performance is achieved while retaining a high event rate (10 per s). The spectrometer was characterized and used in a proof-of-principle experiment on strong field dissociative double ionization of carbon dioxide molecules (CO), using a 400 kHz repetition rate laser system. The experimental results demonstrate that the spectrometer can detect multiple ions in coincidence, making it a valuable tool for studying the fragmentation dynamics of molecules in strong laser fields.
一种新型的基于像素化互补金属氧化物半导体探测器的离子-离子符合成像光谱仪已经被开发出来,用于研究强激光场中分子的电离和碎裂过程。作为速度映射成像光谱仪的一部分,该检测系统由一组微通道板和一个 Timepix 探测器组成。一个快速时间数字转换器(TDC)被用来通过关联 Timepix 探测器和 TDC 分别记录的时间戳来提高离子飞行时间分辨率。此外,通过使用质心质心法实现了亚像素空间分辨率(<6 μm)。在保留高事件率(10 per s)的同时实现了这一性能。该光谱仪在二氧化碳分子(CO)的强场解离双电离的原理验证实验中进行了表征和使用,该实验使用了一个 400 kHz 重复率的激光系统。实验结果表明,该光谱仪能够检测多个符合的离子,使其成为研究强激光场中分子碎裂动力学的有力工具。