| Literature DB >> 27308146 |
A Serebrov1, V Varlamov1, A Kharitonov1, A Fomin1, Yu Pokotilovski2, P Geltenbort3, J Butterworth3, I Krasnoschekova1, M Lasakov1, R Tal'daev1, A Vassiljev1, O Zherebtsov1.
Abstract
We present a new value for the neutron lifetime of 878.5 ± 0.7stat. ± 0.3syst. This result differs from the world average value by 6.5 standard deviations and by 5.6 standard deviations from the previous most precise result. However, this new value for the neutron lifetime together with a β-asymmetry in neutron decay, A 0, of -0.1189(7) is in a good agreement with the Standard Model.Entities:
Keywords: neutron lifetime; ultracold neutrons
Year: 2005 PMID: 27308146 PMCID: PMC4852839 DOI: 10.6028/jres.110.049
Source DB: PubMed Journal: J Res Natl Inst Stand Technol ISSN: 1044-677X
Fig. 1The Scheme of “Gravitrap”, the gravitational UCN storage system. 1: neutron guide from UCN Turbine; 2: UCN inlet valve; 3: beam distribution flap valve (shown in the filling position); 4: connection unit; 5: “high” vacuum volume; 6: “rough” vacuum volume; 7: cooling coils; 8: UCN storage trap (the narrow cylindrical trap is shown by a dashed line); 9: cryostat; 10: mechanics for trap rotation; 11: stepping motor; 12: UCN detector; 13: detector shielding; 14: evaporator.
Fig. 2Time diagrams of the storage cycle for two different holding times.
Fig. 3Result of extrapolation to the neutron lifetime using joint energy and the size extrapolation method. Measurements made with a spherical (open circles) and cylindrical (filled circles) traps.
The systematic effects and their uncertainties
| Systematic effect | Value, | Uncertainty, |
|---|---|---|
| Method of | 0 | 0.236 |
| Influence of | 0 | 0.144 |
| Spectrum uncertainties | 0 | 0.104 |
| Uncertainties of traps sizes (1 mm) | 0 | 0.058 |
| Influence of the residual gas | 0.4 | 0.024 |
| Uncertainty of LTF critical energy (20 neV) | 0 | 0.004 |
|
| ||
| Total systematic effect | 0.4 | 0.3 |
Fig. 4|Vud | versus − GA / GV. |Vud | was derived from higher quark generation decays via predicted from unitarity, from Ft values of nuclear decays, and neutron β-decay.