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Low energy super-elastic scattering studies of calcium over the complete angular range using a magnetic angle changing device

机译:使用磁角度改变装置在整个角度范围内对钙进行低能超弹性散射研究

摘要

Super-elastic scattering processes can be considered as the ‘time reversal’ of electron–photon coincidence measurements, with the advantage that data are accumulated thousands of times faster. This allows a far more extensive and accurate study of electron excitation of atoms which can also be excited using laser radiation. The application of a newly invented magnetic angle changing (MAC) device to these experiments has allowed the complete scattering geometry to be accessed for the first time, and experimental methods adopted in these new experiments are discussed here. Data are presented for excitation of the 41P1 state of calcium by electron impact at scattering angles from near 0 degrees to beyond 180 degrees, with incident energies of 45 eV and 55 eV. The results are compared to the DWBA theory of Stauffer and colleagues, with generally excellent agreement.
机译:超弹性散射过程可以看作是电子-光子重合测量的“时间反转”,其优点是数据的存储速度快数千倍。这允许对原子的电子激发进行更广泛和准确的研究,这些原子也可以使用激光辐射来激发。新发明的磁角度改变(MAC)装置在这些实验中的应用已使首次获得完整的散射几何结构成为可能,这里讨论在这些新实验中采用的实验方法。给出了通过电子撞击以接近0度到超过180度的散射角激发入射的45 eV和55 eV的钙激发41P1态的数据。将该结果与Stauffer及其同事的DWBA理论进行了比较,总体上取得了很好的一致性。

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