题目:
Multireference covariant density functional theory for the nuclear matrix
elements of neutrinoless double beta decay
摘要:Since the discovery of neutrino oscillations, the search for 0νββ decay
has attracted lots of renewed interests in nuclear and particle physics. The
worldwide set of double-beta-decay measurements running, under construction, and
planned for the near future represents “current generation experiments”,
approaching the half-lives of the 0νββ decay about 10^26 years. In particular,
it is expected that these will lead to one or more “next generation”experiments
which should have sufficient sensitivity to, with high confidence level, resolve
the issue of Majorana vs. Dirac nature of neutrinos for the so-called “inverted
hierarchy” of neutrino mass values. However, the large uncertainties in the
nuclear matrix elements governing this process will translate into the effective
neutrino mass and thus complicate the situation. Therefore, lots of theoretical
efforts from nuclear physics are being devoted into reducing these uncertainties
to be as small as possible. In this talk, I may review briefly the research
background of the 0νββ decay. In particular, I may introduce in detail the first
full relativistic calculation of the nuclear matrix elements for this process
based on the mechanism of exchange either light or heavy neutrinos within the
framework of multi-reference covariant density functional theory. Finally, I
will end my talk by introducing briefly the project that we are working
on,namely ab-initio calculation of the nuclear matrix elements for the 0νββ
decay with the multi-reference in-medium similarity renormalization group
method.
报告时间:2016年10月12日 (星期三)下午4:00
报告地点:物理馆103