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Neutron-deuteron analyzing power data at 19.0 MeV

机译:中子氘核分析19.0 MeV的功率数据

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Measurements of neutron-deuteron (n-d) analyzing power Ay(θ) at En=19.0 MeV are reported at 16 angles from θc.m.=46.7 to 152.0°. The objective of the experiment is to better characterize the discrepancies between n-d data and the predictions of three-nucleon calculations for neutron energies above 16.0 MeV. The experiment used a shielded neutron source, which produced polarized neutrons via the 2H(d⃗,n⃗)3He reaction, a deuterated liquid scintillator center detector (CD) and liquid-scintillator neutron side detectors. A coincidence between the CD and the side detectors isolated the elastic-scattering events. The CD pulse height spectrum associated with each side detector was sorted by using pulse-shape discrimination, time-of-flight techniques, and by removing accidental coincidences. A Monte Carlo computer simulation of the experiment accounted for effects due to finite geometry, multiple scattering, and CD edge effects. The resulting high-precision data (with absolute uncertainties ranging from 0.0022 to 0.0132) have a somewhat lower discrepancy with the predictions of three-body calculations, as compared to those found at lower energies.
机译:报告了从θc.m.= 46.7至152.0°的16个角度测量的En = 19.0 MeV下中子氘核(n-d)分析能力Ay(θ)。该实验的目的是更好地表征n-d数据与16.0 MeV以上中子能量的三核子计算预测之间的差异。实验使用了一个屏蔽中子源,该中子源通过2H(d⃗,n⃗)3He反应,一个氘化液体闪烁体中心探测器(CD)和一个液体闪烁体中子侧探测器产生了极化中子。 CD和侧面检测器之间的巧合隔绝了弹性散射事件。通过使用脉冲形状识别,飞行时间技术以及通过消除偶然的巧合,对与每个侧面检测器相关的CD脉冲高度谱进行了分类。蒙特卡洛计算机模拟实验说明了由于有限的几何形状,多重散射和CD边缘效应引起的效应。与在较低能量下发现的数据相比,所得的高精度数据(绝对不确定性在0.0022到0.0132之间)与三体计算的预测值之间的差异较小。

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