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Velocity distribution in Recoil-Distance Doppler-Shift experiments

机译:反冲距离多普勒频移实验中的速度分布

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摘要

The Recoil-Distance Doppler-Shift (RDDS) or Plunger technique is a well established method to measure lifetimes of excited nuclear states in the pico-second range. In standard RDDS experiments, the velocities of the nuclei of interest emerging from a usually thin target foil are distributed around a mean velocity (v) = _v with a relatively narrow width and it is sufficient to assume that all nuclei move with the average velocity. In this paper we investigate the influence of a broader velocity distribution especially for lifetimes τ determined using the DDCM and its basic relation τ= -(R(x)-R_(feed)(x))/(dR(x)/dx)v and simulated experimental data (R(x) decay curve of the level of interest, R_(feed)(x) feeding decay curves). It turned out that it is favorable to use <1/v>_v instead of 1/_v. Further, deviations from the correct lifetimes practically vanish at target to stopper separations close to the maximum amplitude of the function dR(x)/dx. As a consequence in a plunger experiment target-to-stopper separations should be selected symmetrically around the maximum amplitude of the function dR(x)/dx in order to minimize the effect of a broad velocity distribution.
机译:后坐距离多普勒频移(RDDS)或柱塞技术是一种成熟的方法,可以测量皮秒范围内激发核态的寿命。在标准RDDS实验中,从通常较薄的目标箔片出来的感兴趣核的速度分布在宽度相对较窄的平均速度(v)= _v周围,并且足以假设所有核都随着平均速度。在本文中,我们研究了更宽的速度分布的影响,特别是对于使用DDCM确定的寿命τ及其基本关系τ=-(R(x)-R_(feed)(x))/(dR(x)/ dx) v和模拟实验数据(感兴趣水平的R(x)衰减曲线,R_(feed)(x)馈入衰减曲线)。事实证明,使用<1 / v> _v代替1 / _v是有利的。此外,在目标到塞子的间距接近函数dR(x)/ dx的最大幅度的情况下,与正确寿命的偏差实际上消失了。因此,在柱塞实验中,应在函数dR(x)/ dx的最大幅度附近对称选择目标到塞子的距离,以最大程度地减小宽速度分布的影响。

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