Preparatory studies for a high-precision Penning-trap measurement of the 163Ho electron capture Q-value

被引:0
作者
F. Schneider
T. Beyer
K. Blaum
M. Block
S. Chenmarev
H. Dorrer
Ch. E. Düllmann
K. Eberhardt
M. Eibach
S. Eliseev
J. Grund
U. Köster
Sz. Nagy
Yu. N. Novikov
D. Renisch
A. Türler
K. Wendt
机构
[1] Johannes Gutenberg-Universität,Institut für Kernchemie
[2] Johannes Gutenberg-Universität,Institut für Physik
[3] Max-Planck-Institut für Kernphysik,Physical Faculty
[4] GSI Helmholtzzentrum für Schwerionenforschung GmbH,PRISMA Cluster of Excellence
[5] Helmholtz-Institut Mainz,National Superconducting Cyclotron Laboratory
[6] Saint Petersburg State University,undefined
[7] Paul Scherrer Institute,undefined
[8] Universität Bern,undefined
[9] Johannes Gutenberg-Universität,undefined
[10] Institut Laue-Langevin,undefined
[11] Michigan State University,undefined
来源
The European Physical Journal A | 2015年 / 51卷
关键词
Neutrino Mass; Cyclotron Frequency; Electron Capture Decay; Endpoint Region; Direct Mass Measurement;
D O I
暂无
中图分类号
学科分类号
摘要
The ECHo Collaboration (Electron Capture 163Ho aims to investigate the calorimetric spectrum following the electron capture decay of 163Ho to determine the mass of the electron neutrino. The size of the neutrino mass is reflected in the endpoint region of the spectrum, i.e., the last few eV below the transition energy. To check for systematic uncertainties, an independent determination of this transition energy, the Q-value, is mandatory. Using the TRIGA-TRAP setup, we demonstrate the feasibility of performing this measurement by Penning-trap mass spectrometry. With the currently available, purified 163Ho sample and an improved laser ablation mini-RFQ ion source, we were able to perform direct mass measurements of 163Ho and 163Dy with a sample size of less than 1017 atoms. The measurements were carried out by determining the ratio of the cyclotron frequencies of the two isotopes to those of carbon cluster ions using the time-of-flight ion cyclotron resonance method. The obtained mass excess values are ME(163Ho)= −66379.3(9) keV and ME(163Dy)= −66381.7(8) keV. In addition, the Q-value was measured for the first time by Penning-trap mass spectrometry to be Q = 2.5(7) keV.
引用
收藏
相关论文
共 242 条
  • [1] Kraus C.(2005)undefined Eur. Phys. J. C 40 447-undefined
  • [2] Bornschein B.(2011)undefined Phys. Rev. D 84 112003-undefined
  • [3] Bornschein L.(1982)undefined Phys. Lett. B 118 429-undefined
  • [4] Bonn J.(2015)undefined J. Phys. G 42 015108-undefined
  • [5] Flatt B.(2015)undefined Phys. Rev. C 91 035504-undefined
  • [6] Kovalik A.(2012)undefined Chin. Phys. C 36 1603-undefined
  • [7] Ostrick B.(2011)undefined Phys. Lett. B 697 11-undefined
  • [8] Otten E.(1987)undefined Phys. Rev. A 35 679-undefined
  • [9] Schall J.(1997)undefined Phys. Lett. B 398 415-undefined
  • [10] Thümmler T.(2012)undefined Temp. Phys. 167 1004-undefined