Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets

Latuszynski, A. ; Zuber, K. ; Zuber, J. ; Potempa, A. ; Zuk, W.

Amsterdam : Elsevier
ISSN:
0029-554X
Source:
Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
Topics:
Energy, Environment Protection, Nuclear Power Engineering
Physics
Type of Medium:
Electronic Resource
URL:
_version_ 1798291152320856065
autor Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
autorsonst Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
book_url http://linkinghub.elsevier.com/retrieve/pii/0029-554X(74)90053-6
datenlieferant nat_lic_papers
fussnote A method of fast extraction of isobars of rare-earth elements by direct separation from the proton-irradiated targets without chemical processing has been developed. The efficiency of the diffusion process of separate rare-earth elements from a tantalum target depending on temperature and duration of the process has been measured. The conditions securing a high degree of diffusion during a 2-3 min period have been found and the possibility of utilization of the diffusion process for the electromagnetic separation of rare-earth elements according to isobars has been proved.The efficiency of the separation process using the ion sources with surface ionization has been measured under different working conditions.Using the method proposed for investigations in the field of nuclear spectroscopy the gamma spectra of short-living isotopes with T"1"2 〉= 1 min have been measured. The new isotopes ^1^6^1Yb(4.2 min), ^1^4^8Dy(3.5 min) and ^1^3^2Pr(1.6 min) have been identified. The possibility of effective application of this method to spectroscopic investigations of many elements has been proved.
hauptsatz hsatz_simple
identnr NLZ180548441
issn 0029-554X
journal_name Nuclear Instruments and Methods
materialart 1
package_name Elsevier
publikationsort Amsterdam
publisher Elsevier
reference 120 (1974), S. 321-328
search_space articles
shingle_author_1 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
shingle_author_2 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
shingle_author_3 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
shingle_author_4 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
shingle_catch_all_1 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
0029-554X
0029554X
Elsevier
shingle_catch_all_2 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
0029-554X
0029554X
Elsevier
shingle_catch_all_3 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
0029-554X
0029554X
Elsevier
shingle_catch_all_4 Latuszynski, A.
Zuber, K.
Zuber, J.
Potempa, A.
Zuk, W.
Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
0029-554X
0029554X
Elsevier
shingle_title_1 Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
shingle_title_2 Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
shingle_title_3 Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
shingle_title_4 Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
sigel_instance_filter dkfz
geomar
wilbert
ipn
albert
fhp
source_archive Elsevier Journal Backfiles on ScienceDirect 1907 - 2002
timestamp 2024-05-06T08:28:05.158Z
titel Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
titel_suche Method of electromagnetic separation of radioactive isotopes of rare-earth elements directly from targets
A method of fast extraction of isobars of rare-earth elements by direct separation from the proton-irradiated targets without chemical processing has been developed. The efficiency of the diffusion process of separate rare-earth elements from a tantalum target depending on temperature and duration of the process has been measured. The conditions securing a high degree of diffusion during a 2-3 min period have been found and the possibility of utilization of the diffusion process for the electromagnetic separation of rare-earth elements according to isobars has been proved.The efficiency of the separation process using the ion sources with surface ionization has been measured under different working conditions.Using the method proposed for investigations in the field of nuclear spectroscopy the gamma spectra of short-living isotopes with T"1"2 〉= 1 min have been measured. The new isotopes ^1^6^1Yb(4.2 min), ^1^4^8Dy(3.5 min) and ^1^3^2Pr(1.6 min) have been identified. The possibility of effective application of this method to spectroscopic investigations of many elements has been proved.
topic ZP
U
uid nat_lic_papers_NLZ180548441