论文标题

N $^3 $ HE实验:$^{3} $中的偏光中子捕获中的均等违规

The n$^3$He Experiment: Parity Violation in Polarized Neutron Capture on $^{3}$He

论文作者

n3He Collaboration, McCrea, M., Kabir, M. L., Birge, N., Coppola, C. E., Hayes, C., Plemons, E., Ramírez-Morales, A., Scott, E. M., Watts, J., Baessler, S., Barrón-Palos, L., Bowman, J. D., Britton Jr., C., Calarco, J., Cianciolo, V., Crawford, C. B., Ezell, D., Fomin, N., Garishvili, I., Gericke, M. T., Greene, G. L., Hale, G. M., Hamblen, J., Iverson, E., Mueller, P. E., Novikov, I., Penttila, S., Wickersham, C.

论文摘要

已经取得了重大进展,以实验确定一组核子之间的均等(PV)弱相互作用幅度。 In this paper we describe the design, construction and operation of the n$^3$He experiment that was used to measure the PV asymmetry $A_{\mathrm{PV}}$ in the direction of proton emission in the reaction $\vec{\mathrm{n}} + {^3}\mathrm{He} \rightarrow {^3} \ Mathrm {H} + \ Mathrm {p} $,使用在未偏光的气态$^3 \ Mathrm {He} $ target中捕获极化的冷中子。最近计算出这种不对称性的\ cite {viviani,viviani2},均以传统的介子交换图片和有效的田野理论(EFT)(包括两杆)交换为单词。在本文所述的实验中获得的高精度结果(单独发布)是在可能的精确计算的几个体系中,构成了强烈的PV(HPV)理论的重要基准。直到今天,HPV仍然是电脉络理论中最了解的方面之一。计算估计,根据框架或模型,不对称的大小在$(9.4 \ rightarrow 3.5)范围内\ times 10^{ - 8} $。 $ΔA_ {\ mathrm {pv}}} \ simeq 1 \ times10^{ - 8} $实验的不对称性和较小的总体目标不确定性的小尺寸。在本文中,我们描述了实验设置和测量方法以及腔室的详细设计,包括Garfield ++和Geant4模拟的结果,这些模拟构成了腔室设计和分析的基础。我们还显示了调试和生产中的数据,并定义了腔室有助于测量$ a _ {\ mathrm {pv}} $的系统错误。我们给出了有关测量的最终不确定性。

Significant progress has been made to experimentally determine a complete set of the parity-violating (PV) weak-interaction amplitudes between nucleons. In this paper we describe the design, construction and operation of the n$^3$He experiment that was used to measure the PV asymmetry $A_{\mathrm{PV}}$ in the direction of proton emission in the reaction $\vec{\mathrm{n}} + {^3}\mathrm{He} \rightarrow {^3}\mathrm{H} + \mathrm{p}$, using the capture of polarized cold neutrons in an unpolarized gaseous $^3\mathrm{He}$ target. This asymmetry has was recently calculated \cite{Viviani,Viviani2}, both in the traditional style meson exchange picture, and in effective field theory (EFT), including two-pion exchange. The high precision result (published separately) obtained with the experiment described herein forms an important benchmark for hadronic PV (HPV) theory in few-body systems, where precise calculations are possible. To this day, HPV is still one of the most poorly understood aspects of the electro-weak theory. The calculations estimate the size of the asymmetry to be in the range of $(-9.4 \rightarrow 3.5)\times 10^{-8}$, depending on the framework or model. The small size of the asymmetry and the small overall goal uncertainty of the experiment of $δA_{\mathrm{PV}} \simeq 1\times10^{-8}$ places strict requirements on the experiment, especially on the design of the target-detector chamber. In this paper we describe the experimental setup and the measurement methodology as well as the detailed design of the chamber, including results of Garfield++ and Geant4 simulations that form the basis of the chamber design and analysis. We also show data from commissioning and production and define the systematic errors that the chamber contributes to the measured $A_{\mathrm{PV}}$. We give the final uncertainty on the measurement.

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