首页> 外文期刊>Molecular Physics:An International Journal at the Interface Between Chemistry and Physics >Multi-fragment vector correlation imaging. A search for hidden dynamical symmetries in many-particle molecular fragmentation processes
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Multi-fragment vector correlation imaging. A search for hidden dynamical symmetries in many-particle molecular fragmentation processes

机译:多片段矢量相关成像。在多粒子分子断裂过程中寻找隐藏的动力学对称性

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State-of-the-art multi-fragment imaging techniques like the COLTRIMS reaction microscope unveil the complete momentum pattern in low-energy atomic and molecular many-particle fragmentation processes much like the bubble chamber in high-energy particle physics. The excellent momentum resolution far below 1 m e a 0 E h/ħ (1 a.u.) and the high multi-fragment detection efficiency of the COLTRIMS technique reveal the dynamic correlation of bound many-particle systems as they are fragmented into the continuum. For the fragmentation process of carbon monoxide following carbon K-shell ionization using 306 eV photons (right and left circularly polarized) hν + CO → ephoto + O+ + C+ + eK-Auger, the vector correlations between all fragments were measured in coincidence for each event. According to the common view of this process, the photoelectron and Auger electron emission probe different aspects of the time-dependent fragmentation process, i.e. the ‘time evolution’ of fragmentation. Based on measured vectors and vector combinations (e.g. vector products) of (1) the absorbed photon, (2) the emitted photoelectron and (3) ions, the Auger electron emission can be investigated with respect to the axes and planes defined by these vector combinations for each event in order to explore dynamical symmetries in multi-particle systems.View full textDownload full textKeywordsvector correlation, four fragment momentum imaging, dynamical symmetriesRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/00268976.2012.686642
机译:最先进的多片段成像技术(例如COLTRIMS反应显微镜)揭示了低能原子和分子多粒子破碎过程中的完整动量模式,就像高能粒子物理学中的气泡腔一样。极好的动量分辨率,远低于1 m e a 0 E h /ħ(1au)和高多碎片检测COLTRIMS技术的效率揭示了绑定的多粒子系统破碎成连续体后的动态相关性。为一氧化碳的碳K壳电离后使用306?eV光子(右和左圆极化)的破碎过程h?+ + CO→e子照片> + O + + C + + e K-Auger,

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