CERN Accelerating science

CERN Document Server 15 ჩანაწერია ნაპოვნი  1 - 10შემდეგი  ჩანაწერთან გადასვლა: ძიებას დასჭირდა 1.17 წამი. 
1.
$\beta$ decay studies of neutron-deficient gallium isotopes with Lucrecia / Guadilla, Victor (University of Warsaw) ; Agramunt, Jorge (Instituto de Fisica Corpuscular) ; Algora, Alejandro (Instituto de Fisica Corpuscular) ; Araszkiewicz, Martyna (University of Warsaw) ; Au, Mia (ISOLDE, CERN) ; Bernerd, Cyril (ISOLDE, CERN) ; Briz, Jose Antonio (Universidad Complutense de Madrid) ; Chrysalidis, Katerina (ISOLDE, CERN) ; Fijałkowska, Alexandra (University of Warsaw) ; Fraile, Luis Mario (Universidad Complutense de Madrid) et al.
CERN-INTC-2024-063 ; INTC-P-718.
- 2024.
Full text
2.
Using in-trap decay to provide inaccessible and low-yield isotopes to the ISOLDE facility / Reilly, Jordan R (CERN, University of Manchester) ; Athanasakis-Kaklamanakis, Michail (Imperial College London, KU Leuven) ; Chrysalidis, Katerina (CERN) ; Au, Mia (CERN) ; Cubiss, James G (University of York) ; Nies, Lukas (CERN)
CERN-INTC-2024-015 ; INTC-I-270.
- 2024.
Fulltext
3.
Ab initio study of electronic states and radiative properties of the AcF molecule / Skripnikov, Leonid V (St. Petersburg, INP ; St. Petersburg State U.) ; Oleynichenko, Alexander V (St. Petersburg, INP) ; Zaitsevskii, Andréi (St. Petersburg, INP ; Moscow State U.) ; Mosyagin, Nikolai S (St. Petersburg, INP) ; Athanasakis-Kaklamanakis, Michail (CERN ; Leuven U.) ; Au, Mia (CERN) ; Neyens, Gerda (Leuven U.)
Relativistic coupled-cluster calculations of the ionization potential, dissociation energy, and excited electronic states under 35 000 cm−1 are presented for the actinium monofluoride (AcF) molecule. The ionization potential is calculated to be IPe = 48 866 cm−1, and the ground state is confirmed to be a closed-shell singlet and thus strongly sensitive to the T,P-violating nuclear Schiff moment of the Ac nucleus. [...]
2023 - 16 p. - Published in : J. Chem. Phys. 159 (2023) 124301
4.
Production of actinide atomic and molecular ion beams at CERN-ISOLDE / Au, Mia
The Isotope Separation On-Line method is used to produce, extract, ionize and deliver a wide variety of radionuclides/radioisotopes as ion beams at the CERN-ISOLDE facility [...]
CERN-THESIS-2023-228 - 133 p.

5.
Developments at the CERN-ISOLDE Offline 2 mass separator / Schuett, Maximilian (CERN) ; Au, Mia (CERN ; Mainz U.) ; Bissell, Mark (CERN) ; Bidault, Niels (CERN) ; Koliatos, Alexandros (CERN) ; Le, Line (CERN) ; Azaryan, Nikolay (CERN) ; Heinke, Reinhard (CERN) ; Chrysalidis, Katerina (CERN) ; Rothe, Sebastian (CERN)
The Offline 2 mass separator laboratory is part of the CERN-ISOLDE Offline facilities - a suite of installations required to perform essential quality control on target and ion source units before irradiation at CERN-ISOLDE (Catherall et al., 2017) [1]. The facility is also used for extended preparatory offline studies as a prerequisite before conducting any beam development on-line, especially establishing systematic effects. [...]
2023 - 4 p.
Fulltext: PDF;
In : 19th International Conference on Electromagnetic Isotope Separators and Related Topics (EMIS 2022), Daejeon, Korea, 3 - 7 Oct 2022, pp.82-85
6.
Addendum - In-source laser resonance ionization spectroscopy of neptunium and plutonium / Au, Mia (SY-STI, CERN, Switzerland, Johannes Gutenberg-Universität Mainz, Germany.) ; Jaradat, Asar (SY-STI, CERN, Switzerland, University of Manchester, United Kingdom.) ; Kaja, Magdalena (Johannes Gutenberg-Universität Mainz, Germany.) ; Urquiza-González, Mitzi (Division HÜBNER Photonics, HÜBNER GmbH & Co. KG, Germany.)
CERN-INTC-2023-068 ; INTC-I-264.
- 2023.
Fulltext - Original Document (INTC-I-243)
7.
Yield measurements for lanthanide elements with Ta-foil target and a LIST ion source / Chrysalidis, Katerina (CERN) ; Heinke, Reinhard (CERN) ; Au, Mia (CERN) ; Bernerd, Cyril (CERN) ; Jaradat, Asar AH (CERN, University of Manchester) ; Köster, Ulli (ILL) ; Mancheva, Ralitsa (CERN, KU Leuven) ; Marsh, Bruce (CERN) ; Reis, Edgar (CERN) ; Schütt, Maximilian (CERN) et al.
CERN-INTC-2023-065 ; INTC-I-263.
- 2023.
Fulltext - Original Document (INTC-I-246)
8.
Direct measurement of superallowed beta transitions with Lucrecia / Guadilla, Victor (University of Warsaw) ; Agramunt, Jorge (Instituto de Fisica Corpuscular) ; Algora, Alejandro (Instituto de Fisica Corpuscular) ; Au, Mia (ISOLDE-CERN) ; Bernerd, Cyril (ISOLDE-CERN) ; Chrysalidis, Katerina (ISOLDE-CERN) ; Fijałkowska, Alexandra (University of Warsaw) ; Gelletly, William (University of Surrey) ; Heinke, Reinhard (ISOLDE-CERN) ; Korgul, Agnieszka (University of Warsaw) et al.
CERN-INTC-2023-057 ; INTC-I-259.
- 2023.
Fulltext
9.
Protactinium chemistry at ISOLDE from external sources / Au, Mia (CERN, JGU) ; Athanasakis-Kaklamanakis, Michail (CERN, KUL) ; Nies, Lukas (CERN, University of Greifswald)
CERN-INTC-2023-050 ; INTC-I-258.
- 2023.
Fulltext
10.
First on-line application of the high-resolution spectroscopy laser ion source PI-LIST at ISOLDE / Heinke, Reinhard (CERN) ; Au, Mia (CERN ; Mainz U.) ; Bernerd, Cyril (CERN ; Leuven U.) ; Chrysalidis, Katerina (CERN) ; Cocolios, Thomas E (Leuven U.) ; Fedosseev, Valentin N (CERN) ; Hendriks, Isabel (CERN ; Lund U. (main)) ; Jaradat, Asar A H (CERN) ; Kaja, Magdalena (Mainz U., Inst. Phys.) ; Kieck, Tom (Darmstadt, GSI ; Helmholtz Inst., Mainz) et al.
We report on the development, characterization, and first application of a specialized resonance ionization laser ion source for high-resolution spectroscopy applications below usual hot cavity Doppler broadening limitations, for on-line experiments at CERN-ISOLDE. The new PI-LIST ion source comprises perpendicular laser/atom beam interaction in a radio-frequency quadrupole unit directly downstream the hot atomizer cavity. [...]
2023 - 5 p. - Published in : Nucl. Instrum. Methods Phys. Res., B 541 (2023) 8-12 Fulltext: PDF;
In : 19th International Conference on Electromagnetic Isotope Separators and Related Topics (EMIS 2022), Daejeon, Korea, 3 - 7 Oct 2022, pp.8-12

CERN Document Server : 15 ჩანაწერია ნაპოვნი   1 - 10შემდეგი  ჩანაწერთან გადასვლა:
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