| Literature DB >> 27308148 |
V F Ezhov1, A Z Andreev1, A A Glushkov1, A G Glushkov1, M N Groshev1, V A Knyazkov1, G B Krygin1, V L Ryabov1, A P Serebrov1, B A Bazarov2, P Geltenbort3, F J Hartman4, S Paul4, R Picker4, O Zimmer4, N A Kovrizhnykh5.
Abstract
Further improvement in the accuracy of any neutron lifetime experiment by means of ultracold neutrons (UCN) in material bottles is limited due to unavoidable systematic effects when the UCN are reflected from the walls. However, such effects can be excluded in principle if magnetic trapping of UCN is used. The storage of UCN in a small magnetic trap made of permanent magnets was demonstrated for the first time ever. The measured storage time in this feasibility study was (882 ± 16) s. At this level of accuracy no depolarization was observed.Entities:
Keywords: magnetic traps; permanent magnets; ultracold neutrons
Year: 2005 PMID: 27308148 PMCID: PMC4852827 DOI: 10.6028/jres.110.051
Source DB: PubMed Journal: J Res Natl Inst Stand Technol ISSN: 1044-677X
Fig. 1Cross-section of the Magnetic Trap. 1 – Vacuum Cover, 2 – Yoke of Permanent Magnets, 3 – Poles, 4 – Main Magnets, 5 – Additional Magnets, 6 – Solenoid, 7 – Yoke of Solenoid.
Fig. 2Scheme of Experimental design. 1 – Additional Coil, 2 – Vacuum Pumping, 3 – Neutron Absorber, 4 – Solenoid, 5 – Neutron shutter, 6 – Detector, 7 – Neutron Switcher, 8 – Magnets and Poles.
| Volume | Neutrons after 50 s of cleaning time | Neutron density after 50 s of cleaning time (n/cm3) | Accuracy of lifetime measuring | |
|---|---|---|---|---|
| Existing lower part of trap | 3.61 | 62.6 ± 2.0 | 0.017 | 16 s in 6 days |
| Upper part of trap | 15.61 | 1770 ± 11 | 0.11 | 3.1 s in 6 days |
| Trap of larger diameter | 62.41 | 7000 | 0.11 | 1.6 s in 6 days |