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Title Hyperfine structure constants on the relativistic coupled cluster level with associated uncertainties Author info Pi A. B. Haase, Ephraim Eliav ... [et al.] Author Haase Pi A. B. (20%)
Co-authors Eliav Ephraim (10%)
Iliaš Miroslav 1975- (60%) UMBFP08 - Katedra chémie
Borschevsky Anastasia (10%)
Source document The Journal of Physical Chemistry A. Vol. 124, no. 16 (2020), pp. 3157-3169. - Washington : The American Chemical Society, 2020 Keywords relativistická metóda spriahnutých klastrov atómové konštanty štiepenie Form. Descr. články - journal articles Language English Country United States of America Annotation Accurate predictions of hyperfine structure (HFS) constants are important in many areas of chemistry and physics, from the determination of nuclear electric and magnetic moments to benchmarking of new theoretical methods. We present a detailed investigation of the performance of the relativistic coupled cluster method for calculating HFS constants within the finite-field scheme. URL Link na plný text Public work category ADC No. of Archival Copy 47744 Catal.org. BB301 - Univerzitná knižnica Univerzity Mateja Bela v Banskej Bystrici Database xpca - PUBLIKAČNÁ ČINNOSŤ References PERIODIKÁ-Súborný záznam periodika Title Relativistic calculations of fine atomic constants Author info Miroslav Iliaš, A. Borschevsky Author Iliaš Miroslav 1975- (80%) UMBFP08 - Katedra chémie
Co-authors Borschevsky Anastasia (20%)
Source document CESTC 2014 : Central European symposium on theoretical chemistry : book of abstracts : 21-25 September 2014, Nagybörzsöny, Hungary. S. 37. - Budapešť : Connections 2000 KFT, 2014 ; CESTC 2014 stredoeurópske sympózium Keywords kvantovochemické metódy atómové konštanty atomic constants Language English Country Hungary systematics 54 Annotation It is known that nuclear-spin-dependent (NSD) parity-violating (PV) effects can be strongly enhanced in diatomic molecules containing heavy atoms. Therefore heavy diatomic molecules are very good candidates for the successful measurement of the nuclear anapole moment, which is the dominant NSD parity violation term in heavy elements. URL http://www.cestc2014.conn2000.hu/uploads/CESTC%20Book%20of%20Abstracts_final.pdf Public work category AFG No. of Archival Copy 32649 Catal.org. BB301 - Univerzitná knižnica Univerzity Mateja Bela v Banskej Bystrici Database xpca - PUBLIKAČNÁ ČINNOSŤ