The MASHA facility [1–3] was developed as a high precision mass-spectrometer for heavy and super heavy elements with masses up to 450 a.m.u. It uses ISOL (Isotope Separation On-Line) method. Its unique properties opens great prospective for the investigation of neutron-rich nuclei produced in multinucleon transfer reactions. Mainly nuclei near the neutron N = 126 and N = 152 shell closures are of great interest. This region of nuclei is not so far thoroughly enough investigated while its research has direct relation to the synthesis of super heavy elements. As is known the island of stability close to super heavy elements (Z = 112–118) exists due to the shell effects in nuclei. More detailed investigation of these shell effects can greatly ...
The previously pioneered Isochronous Mass Spectrometry (IMS) has been extended by an additional prec...
The Rare Isotope Science Project (RISP) was established in December 2011 in order to carry out the t...
The present limits of the upper part of the nuclear map are rather close to the beta stability line ...
The MASHA facility [1–3] was developed as a high precision mass-spectrometer for heavy and super hea...
This dissertation in experimental nuclear physics describes the production of exotic, neutron-rich i...
This dissertation in experimental nuclear physics describes the production of exotic, neutron-rich i...
Neutron\u2010rich nuclei from A\u200a = \u200a50 to A\u200a = \u200a80 have been studied through mul...
International audienceVarious types of reactions and identification techniques were applied in the i...
The level properties near the stable doubly-magic nuclei formed the experimental grounds for the the...
Neutron‐rich nuclei from A = 50 to A = 80 have been studied through multi‐nucleon transfer react...
A new setup is proposed to produce and investigate heavy neutron-rich nuclei located along the neutr...
The cornerstone of nuclear structure, as we know it from stable nuclei, is the existence of magic nu...
International audienceMultineutron and multiproton transfer channels, populated in the inverse kinem...
International audienceMultineutron and multiproton transfer channels, populated in the inverse kinem...
Nuclear structure physics has, as a main objective, the study of the nature and the phenomenology of...
The previously pioneered Isochronous Mass Spectrometry (IMS) has been extended by an additional prec...
The Rare Isotope Science Project (RISP) was established in December 2011 in order to carry out the t...
The present limits of the upper part of the nuclear map are rather close to the beta stability line ...
The MASHA facility [1–3] was developed as a high precision mass-spectrometer for heavy and super hea...
This dissertation in experimental nuclear physics describes the production of exotic, neutron-rich i...
This dissertation in experimental nuclear physics describes the production of exotic, neutron-rich i...
Neutron\u2010rich nuclei from A\u200a = \u200a50 to A\u200a = \u200a80 have been studied through mul...
International audienceVarious types of reactions and identification techniques were applied in the i...
The level properties near the stable doubly-magic nuclei formed the experimental grounds for the the...
Neutron‐rich nuclei from A = 50 to A = 80 have been studied through multi‐nucleon transfer react...
A new setup is proposed to produce and investigate heavy neutron-rich nuclei located along the neutr...
The cornerstone of nuclear structure, as we know it from stable nuclei, is the existence of magic nu...
International audienceMultineutron and multiproton transfer channels, populated in the inverse kinem...
International audienceMultineutron and multiproton transfer channels, populated in the inverse kinem...
Nuclear structure physics has, as a main objective, the study of the nature and the phenomenology of...
The previously pioneered Isochronous Mass Spectrometry (IMS) has been extended by an additional prec...
The Rare Isotope Science Project (RISP) was established in December 2011 in order to carry out the t...
The present limits of the upper part of the nuclear map are rather close to the beta stability line ...