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TRIUMF neutral atom trap for beta decay studies

TRIUMF neutral atom trap for beta decay studies
用于 β 衰变研究的 TRIUMF 中性原子陷阱
批准号:
SAPPJ-2016-00026
负责人:
Behr, John
金额:
$7.65万
依托单位:
依托单位国家:
加拿大
项目类别:
Subatomic Physics Envelope - Project
财政年份:
2018
资助国家:
加拿大
项目状态:
已结题
起止时间:
2018-01-01 至 2019-12-31

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中文摘要
翻译
核β衰变相关实验帮助建立了弱相互作用的性质,这是一种除了光子只与“左手”中微子耦合之外还有大量玻色子的理论。这种测量仍然可以通过确定可能的新粒子的第一代轻子-夸克耦合来帮助粒子物理学,但必须达到0.1%的高精度。使用原子阱技术,我们准备完成两组实验,达到所需的0.1%的准确度。 *** 被限制在1毫米大小的云中,原子核经历β衰变,产生三种产物:一个正电子,一个中微子和一个反冲子核。子核的动能非常小,会在一纳米的物质中停止,但它可以自由地逃脱陷阱。通过探测它与正电子的重合,我们可以测量中微子的动量和角分布。*** 我们已经学会了通过光泵浦自旋37 K核,达到99.1 ± 0.1%。我们原子探测37 K原子,测量它们的衰变。我们认为这是一个重大突破,使几个新的自旋极化实验,包括反冲相对于核自旋的不对称性。 我们还将通过测量自旋为0的核的纯费米衰变中的β-中微子相关性来改善与第一代粒子耦合的一般标量相互作用的最佳直接限制。我们正在开发的后坐力的完整角度验收将最大限度地减少TRIUMF EEC批准的本实验升级中的关键系统误差,目标是达到0.1%的精度。我们将确定这个实验的系统误差从南极洲有限的运动学观测不敏感的角度相关。这将是对超允许的Ft测量的能量依赖性的补充,并且是对来自pi到e nu分支比的间接约束的补充。 一种新的可能的时间反演破坏源(TRV)产生了β中微子动量和有时发射的辐射γ之间的相关性。这样的实验已经在辐射K介子衰变中完成,但没有在涉及轻夸克的系统中完成。TRIUMF EEC已经批准了我们测量辐射β衰变TRV不对称性的提议,我们计划以优于0.01的精度测量,这是间接限制的一个数量级的改进。辐射β衰变TRV不对称性,因为它们涉及伽马射线,即使在电荷变化衰变中也可以提供有趣的弱耦合中性电流物理。 结合原子和核技术的精密多学科实验为本科生和格拉德生提供了研究机会。通常,本科生的研究是在β衰变测量所需的独立原子物理工具上,而格拉德生则从硕士级仪器开始,从而进行完整的实验及其分析和解释。
英文摘要
Nuclear beta decay correlation experiments helped establish the nature of the weak interaction, a theory with massive bosons in addition to the photon coupling only to `left-handed' neutrinos. Such measurements can still assist particle physics by determining 1st-generation lepton-quark couplings of possible new particles, but must reach excellent accuracy of 0.1% with high significance. Using atom trap technology, we are poised to complete two sets of experiments reaching the 0.1% accuracy needed. *** Confined in a 1 mm-sized cloud, the nuclei undergo beta decay, producing three products: a positron, a neutrino, and a recoiling daughter nucleus. The daughter nucleus has very little kinetic energy and would stop in a nm of material, but it freely escapes the trap. By detecting it in coincidence with the positron, we can measure the momentum and angular distribution of the neutrino. *** We have learned to spin-polarize 37K nuclei by optical pumping, achieving 99.1+-0.1%. We atomically probe the 37K atoms as their decays are measured. We consider this a major breakthrough that enables several new spin-polarized experiments, including the asymmetry of recoils with respect to the nuclear spin.*** We also would improve our best direct limits on general scalar interactions coupling to the first generation of particles by measuring the beta-neutrino correlation in the pure Fermi decay of a spin-0 nucleus. The complete angular acceptance for recoils we are developing will minimize key systematic errors in our TRIUMF EEC-approved upgrade of this experiment, with a goal of reaching 0.1% accuracy. We would determine systematic errors for this experiment from statistics-limited kinematic observables insensitive to the angular correlation. This would be complementary to the energy dependence of superallowed Ft measurements, and to indirect constraints from the pi to e nu branching ratio.*** A new possible source of time-reversal violation (TRV) produces a correlation between the momenta of the beta, neutrino, and the radiative gamma sometimes emitted. Such experiments have been done in radiative kaon decay, but not in systems involving light quarks. The TRIUMF EEC has approved our proposal to measure the radiative beta decay TRV asymmetry, which we plan to measure at better than 0.01 accuracy, an order of magnitude improvement on indirect limits. Radiative beta decay TRV asymmetries, because they involve the gamma-ray, can provide access to interesting weakly coupled neutral current physics even in a charge-changing decay.*** Precision multidisciplinary experiments combining atomic and nuclear techniques provide research opportunities for undergrad and grad students. Typically the undergrad research is on self-contained atomic physics tools needed for the beta decay measurements, while the grad students start with masters-level instrumentation leading to a full experiment and its analysis and interpretation.
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TRIUMF Neutral Atom Trap for beta decay angular correlations: searches for new interactions
  • 批准号:
    SAPPJ-2019-00037
  • 项目类别:
    Subatomic Physics Envelope - Project
  • 资助金额:
    $10.53万
  • 财政年份:
    2022
  • 负责人:
    Behr, John
  • 依托单位:
Direct measurement of nuclear polarization for decay correlations testing the Standard Model
  • 批准号:
    SAPEQ-2021-00004
  • 项目类别:
    Subatomic Physics Envelope - Research Tools and Instruments
  • 资助金额:
    $3.09万
  • 财政年份:
    2021
  • 负责人:
    Behr, John
  • 依托单位:
TRIUMF Neutral Atom Trap for beta decay angular correlations: searches for new interactions
  • 批准号:
    SAPPJ-2019-00037
  • 项目类别:
    Subatomic Physics Envelope - Project
  • 资助金额:
    $10.53万
  • 财政年份:
    2021
  • 负责人:
    Behr, John
  • 依托单位:
TRIUMF Neutral Atom Trap for beta decay angular correlations: searches for new interactions
  • 批准号:
    SAPPJ-2019-00037
  • 项目类别:
    Subatomic Physics Envelope - Project
  • 资助金额:
    $11.82万
  • 财政年份:
    2020
  • 负责人:
    Behr, John
  • 依托单位:
国内基金
海外基金
双星中性原子探测图像在地磁暴期间的时序演化过程反演分析