日本語
 
Help Privacy Policy ポリシー/免責事項
  詳細検索ブラウズ

アイテム詳細


公開

学術論文

An experiment for the direct determination of the g-factor of a single proton in a Penning trap

MPS-Authors
/persons/resource/persons30950

Rodegheri,  Cricia C.
Division Prof. Dr. Klaus Blaum, MPI for Nuclear Physics, Max Planck Society;

/persons/resource/persons30312

Blaum,  Klaus
Division Prof. Dr. Klaus Blaum, MPI for Nuclear Physics, Max Planck Society;
Fakultät für Physik und Astronomie, Ruprecht-Karls-Universität;

/persons/resource/persons30722

Kreim,  Susanne Waltraud
Division Prof. Dr. Klaus Blaum, MPI for Nuclear Physics, Max Planck Society;

/persons/resource/persons31126

Ulmer,  Stefan
Division Prof. Dr. Klaus Blaum, MPI for Nuclear Physics, Max Planck Society;

External Resource
Fulltext (restricted access)
There are currently no full texts shared for your IP range.
フルテキスト (公開)
公開されているフルテキストはありません
付随資料 (公開)
There is no public supplementary material available
引用

Rodegheri, C. C., Blaum, K., Kracke, H., Kreim, S. W., Mooser, A., Quint, W., Ulmer, S., & Walz, J. (2012). An experiment for the direct determination of the g-factor of a single proton in a Penning trap. New Journal of Physics, 14(June 2012):, pp. 1-33. doi:10.1088/1367-2630/14/6/063011.


引用: https://hdl.handle.net/11858/00-001M-0000-000F-A32D-8
要旨
A new apparatus has been designed that aims at a direct precision measurement of the g-factor of a single isolated proton or antiproton in a Penning trap. We present a thorough discussion on the trap design and a method for the experimental trap optimization using a single stored proton. A first attempt at the g-factor determination has been made in a section of the trap with a magnetic bottle. The Larmor frequency of the proton has been measured with a relative uncertainty of 1.8 × 10−6 and the magnetic moment has been determined with a relative uncertainty of 8.9 × 10−6. A g-factor of 5.585 696(50) has been obtained, which is in excellent agreement with previous measurements and predictions. Future experiments shall drive the spin-flip transition in a section of the trap with a homogeneous magnetic field. This has the potential to improve the precision of the measured g-factor of the proton and the antiproton by several orders of magnitude.