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Källberg, Anders
Alternative names
Publications (10 of 30) Show all publications
Nissen, E., Källberg, A. & Simonsson, A. (2022). First direct observations of gear-changing in a collider. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1031, Article ID 1066601.
Open this publication in new window or tab >>First direct observations of gear-changing in a collider
2022 (English)In: Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, ISSN 0168-9002, E-ISSN 1872-9576, Vol. 1031, article id 1066601Article in journal (Refereed) Published
Abstract [en]

In this work we perform the first demonstration of gear-changing in a real world collider. Gear-changing refers to a collision scheme where each ring of a collider stores a different harmonic number of bunches. These bunches are kept synchronized using different velocities. Such a system has been theorized, but has now been demonstrated using the Double ElectroStatic Ion Ring ExpEriment (DESIREE) in Stockholm Sweden. The experiment was able to demonstrate a gear-changing system, with both four on three bunches and five on four bunches. We determined a measurable parameter that shows a gear-changing system out to 37500 turns of the slow beam (1 s). We were also able to detect a measurable longitudinal beam-beam interaction. We developed insights into how to control this type of system, opening up new possibilities, and showing that DESIREE can be used for gear-changing research.

Keywords
Gear-changing, Beam-beam effect, Beam synchronization, Electrostatic machines
National Category
Subatomic Physics
Identifiers
urn:nbn:se:su:diva-205226 (URN)10.1016/j.nima.2022.166601 (DOI)000796007600008 ()2-s2.0-85127219633 (Scopus ID)
Available from: 2022-06-03 Created: 2022-06-03 Last updated: 2025-02-14Bibliographically approved
Kristiansson, M. K., Chartkunchand, K., Eklund, G., Hole, O. M., Anderson, E. K., de Ruette, N., . . . Hanstorp, D. (2022). High-precision electron affinity of oxygen. Nature Communications, 13(1), Article ID 5906.
Open this publication in new window or tab >>High-precision electron affinity of oxygen
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2022 (English)In: Nature Communications, E-ISSN 2041-1723, Vol. 13, no 1, article id 5906Article in journal (Refereed) Published
Abstract [en]

Negative ions are important in many areas of science and technology, e.g., in interstellar chemistry, for accelerator-based radionuclide dating, and in anti-matter research. They are unique quantum systems where electron-correlation effects govern their properties. Atomic anions are loosely bound systems, which with very few exceptions lack optically allowed transitions. This limits prospects for high-resolution spectroscopy, and related negative-ion detection methods. Here, we present a method to measure negative ion binding energies with an order of magnitude higher precision than what has been possible before. By laser-manipulation of quantum-state populations, we are able to strongly reduce the background from photodetachment of excited states using a cryogenic electrostatic ion-beam storage ring where keV ion beams can circulate for up to hours. The method is applicable to negative ions in general and here we report an electron affinity of 1.461 112 972(87) eV for 16O.

National Category
Atom and Molecular Physics and Optics
Identifiers
urn:nbn:se:su:diva-211102 (URN)10.1038/s41467-022-33438-y (DOI)000865117600004 ()36207329 (PubMedID)2-s2.0-85139385264 (Scopus ID)
Available from: 2022-11-09 Created: 2022-11-09 Last updated: 2025-01-22Bibliographically approved
Eklund, G., Grumer, J., Rosén, S., Ji, M., Punnakayathil, N., Källberg, A., . . . Schmidt, H. T. (2020). Cryogenic merged-ion-beam experiments in DESIREE: Final-state-resolved mutual neutralization of Li+ and D-. Physical Review A: covering atomic, molecular, and optical physics and quantum information, 102(1), Article ID 012823.
Open this publication in new window or tab >>Cryogenic merged-ion-beam experiments in DESIREE: Final-state-resolved mutual neutralization of Li+ and D-
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2020 (English)In: Physical Review A: covering atomic, molecular, and optical physics and quantum information, ISSN 2469-9926, E-ISSN 2469-9934, Vol. 102, no 1, article id 012823Article in journal (Refereed) Published
Abstract [en]

We have developed an experimental technique to study charge-and energy-flow processes in sub-eV collisions between oppositely charged, internally cold, ions of atoms, molecules, and clusters. Two ion beams are stored in separate rings of the cryogenic ion-beam storage facility DESIREE, and merged in a common straight section where a set of biased drift tubes is used to control the center-of-mass collision energy locally in fine steps. Here, we present measurements on mutual neutralization between Li+ and D- where a time-sensitive imaging-detector system is used to measure the three-dimensional distance between the neutral Li and D atoms as they reach the detector. This scheme allows for direct measurements of kinetic-energy releases, and here it reveals separate populations of the 3s state and the (3p + 3d) states in neutral Li while the D atom is left in its ground state 1s. The branching fraction of the 3s final state is measured to be 57.8 +/- 0.7% at a center-of-mass collision energy of 78 +/- 13 meV. The technique paves the way for studies of charge-, energy-, and mass-transfer reactions in single collisions involving molecular and cluster ions in well-defined quantum states.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-184361 (URN)10.1103/PhysRevA.102.012823 (DOI)000555104200010 ()
Available from: 2020-10-01 Created: 2020-10-01 Last updated: 2022-02-25Bibliographically approved
Chartkunchand, K. C., Stockett, M. H., Anderson, E. K., Eklund, G., Kristiansson, M. K., Kamińska, M., . . . Cederquist, H. (2018). Dianion diagnostics in DESIREE: High-sensitivity detection of C-n(2-) from a sputter ion source. Review of Scientific Instruments, 89(3), Article ID 033112.
Open this publication in new window or tab >>Dianion diagnostics in DESIREE: High-sensitivity detection of C-n(2-) from a sputter ion source
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2018 (English)In: Review of Scientific Instruments, ISSN 0034-6748, E-ISSN 1089-7623, Vol. 89, no 3, article id 033112Article in journal (Refereed) Published
Abstract [en]

A sputter ion source with a solid graphite target has been used to produce dianions with a focus on carbon cluster dianions, C-n(2-), with n = 7-24. Singly and doubly charged anions from the source were accelerated together to kinetic energies of 10 keV per atomic unit of charge and injected into one of the cryogenic (13 K) ion-beam storage rings of the Double ElectroStatic Ion Ring Experiment facility at Stockholm University. Spontaneous decay of internally hot C-n(2-) dianions injected into the ring yielded C-n(2-) anions with kinetic energies of 20 keV, which were counted with a microchannel plate detector. Mass spectra produced by scanning the magnetic field of a 90 degrees analyzing magnet on the ion injection line reflect the production of internally hot C-7(2-) - C-24(2-) dianions with lifetimes in the range of tens of microseconds to milliseconds. In spite of the high sensitivity of this method, no conclusive evidence of C-6(2-) was found while there was a clear C-7(2-) signal with the expected isotopic distribution. This is consistent with earlier experimental studies and with theoretical predictions. An upper limit is deduced for a C-6(2-) signal that is two orders-of-magnitude smaller than that for C-7(2-). In addition, CnO2- and CnCu2- dianions were detected.

National Category
Physical Sciences
Research subject
Physics
Identifiers
urn:nbn:se:su:diva-155975 (URN)10.1063/1.5010077 (DOI)000428988300013 ()29604753 (PubMedID)2-s2.0-85044627193 (Scopus ID)
Available from: 2018-05-15 Created: 2018-05-15 Last updated: 2022-10-24Bibliographically approved
Schmidt, H. T., Eklund, G., Chartkunchand, K. C., Anderson, E. K., Kamińska, M., de Ruette, N., . . . Cederquist, H. (2017). Rotationally Cold OH- Ions in the Cryogenic Electrostatic Ion-Beam Storage Ring DESIREE. Physical Review Letters, 119(7), Article ID 073001.
Open this publication in new window or tab >>Rotationally Cold OH- Ions in the Cryogenic Electrostatic Ion-Beam Storage Ring DESIREE
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2017 (English)In: Physical Review Letters, ISSN 0031-9007, E-ISSN 1079-7114, Vol. 119, no 7, article id 073001Article in journal (Refereed) Published
Abstract [en]

We apply near-threshold laser photodetachment to characterize the rotational quantum level distribution of OH- ions stored in the cryogenic ion-beam storage ring DESIREE at Stockholm University. We find that the stored ions relax to a rotational temperature of 13.4 +/- 0.2 K with 94.9 +/- 0.3% of the ions in the rotational ground state. This is consistent with the storage ring temperature of 13.5 +/- 0.5 K as measured with eight silicon diodes but in contrast to all earlier studies in cryogenic traps and rings where the rotational temperatures were always much higher than those of the storage devices at their lowest temperatures. Furthermore, we actively modify the rotational distribution through selective photodetachment to produce an OH- beam where 99.1 +/- 0.1% of approximately one million stored ions are in the J = 0 rotational ground state. We measure the intrinsic lifetime of the J = 1 rotational level to be 145 +/- 28 s.

National Category
Physical Sciences
Research subject
Physics
Identifiers
urn:nbn:se:su:diva-147089 (URN)10.1103/PhysRevLett.119.073001 (DOI)000407557300003 ()28949695 (PubMedID)2-s2.0-85028344989 (Scopus ID)
Available from: 2017-10-16 Created: 2017-10-16 Last updated: 2022-10-20Bibliographically approved
Kamińska, M., Davis, V. T., Hole, O. M., Nascimento, R. F., Chartkunchand, K. C., Blom, M., . . . Hanstorp, D. (2016). Lifetime of the bound excited level in Ni-. Physical Review A. Atomic, Molecular, and Optical Physics, 93(1), Article ID 012512.
Open this publication in new window or tab >>Lifetime of the bound excited level in Ni-
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2016 (English)In: Physical Review A. Atomic, Molecular, and Optical Physics, ISSN 1050-2947, E-ISSN 1094-1622, Vol. 93, no 1, article id 012512Article in journal (Refereed) Published
Abstract [en]

The intrinsic lifetime of the upper level in the bound-bound 3d(9) 4s(2) D-2(3/2) -> 3d(9) 4s(2) D-2(5/2) radiative transition in Ni- was measured to be 15.1 +/- 0.4 s. The experiment was performed at cryogenic temperatures in one of the ion-beam storage rings of the Double ElectroStatic Ion Ring ExpEriment facility at Stockholm University. The storage lifetime of the Ni- ion beam was measured to be close to 5 min at a ring temperature of 13 K.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-126895 (URN)10.1103/PhysRevA.93.012512 (DOI)000368473600008 ()2-s2.0-84955441153 (Scopus ID)
Available from: 2016-02-19 Created: 2016-02-16 Last updated: 2022-10-17Bibliographically approved
Lestinsky, M., Andrianov, V., Aurand, B., Bagnoud, V., Bernhardt, D., Beyer, H., . . . Zhang, Y. H. (2016). Physics book: CRYRING@ESR. The European Physical Journal Special Topics, 225(5), 797-882
Open this publication in new window or tab >>Physics book: CRYRING@ESR
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2016 (English)In: The European Physical Journal Special Topics, ISSN 1951-6355, E-ISSN 1951-6401, Vol. 225, no 5, p. 797-882Article, review/survey (Refereed) Published
Abstract [en]

The exploration of the unique properties of stored and cooled beams of highly-charged ions as provided by heavy-ion storage rings has opened novel and fascinating research opportunities in the realm of atomic and nuclear physics research. Since the late 1980s, pioneering work has been performed at the CRYRING at Stockholm (Abrahamsson et al. 1993) and at the Test Storage Ring (TSR) at Heidelberg (Baumann et al. 1988). For the heaviest ions in the highest charge-states, a real quantum jump was achieved in the early 1990s by the commissioning of the Experimental Storage Ring (ESR) at GSI Helmholtzzentrum für Schwerionenforschung (GSI) in Darmstadt (Franzke 1987) where challenging experiments on the electron dynamics in the strong field regime as well as nuclear physics studies on exotic nuclei and at the borderline to atomic physics were performed. Meanwhile also at Lanzhou a heavy-ion storage ring has been taken in operation, exploiting the unique research opportunities in particular for medium-heavy ions and exotic nuclei (Xia et al. 2002).

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-135030 (URN)10.1140/epjst/e2016-02643-6 (DOI)000384676700001 ()2-s2.0-84988474069 (Scopus ID)
Available from: 2016-11-08 Created: 2016-10-31 Last updated: 2022-10-18Bibliographically approved
Chartkunchand, K. C., Kaminska, M., Anderson, E. K., Kristiansson, M. K., Eklund, G., Hole, O. M., . . . Schmidt, H. T. (2016). Radiative lifetimes of the bound excited states of Pt-. Physical Review A, 94(3), Article ID 032501.
Open this publication in new window or tab >>Radiative lifetimes of the bound excited states of Pt-
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2016 (English)In: Physical Review A, ISSN 2469-9926, Vol. 94, no 3, article id 032501Article in journal (Refereed) Published
Abstract [en]

The intrinsic radiative lifetimes of the 5d(10)6s(2)S(1/2) and 5d(9)6s(2) D-2(3/2) bound excited states in the platinum anion Pt- have been studied at cryogenic temperatures at the Double ElectroStatic Ion Ring Experiment (DESIREE) facility at Stockholm University. The intrinsic lifetime of the higher-lying 5d(10)6s S-2(1/2) state was measured to be 2.54 +/- 0.10 s, while only a lifetime in the range of 50-200 ms could be estimated for the 5d(9)6s(2) D-2(3/2) fine-structure level. The storage lifetime of the Pt- ion beam was measured to be a little over 15 min at a ring temperature of 13 K. The present study reports the lifetime of an atomic negative ion in an excited bound state with an electron configuration different from that of the ground state.

National Category
Physical Sciences
Identifiers
urn:nbn:se:su:diva-135209 (URN)10.1103/PhysRevA.94.032501 (DOI)000382717100010 ()2-s2.0-84989257081 (Scopus ID)
Available from: 2016-11-15 Created: 2016-11-01 Last updated: 2022-10-18Bibliographically approved
Lestinsky, M., Bräuning-Demian, A., Danared, H., Engström, M., Enders, W., Fedotova, S., . . . Vorobjev, G. (2015). CRYRING@ESR: present status and future research. Physica Scripta, T166, Article ID 014075.
Open this publication in new window or tab >>CRYRING@ESR: present status and future research
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2015 (English)In: Physica Scripta, ISSN 0031-8949, E-ISSN 1402-4896, Vol. T166, article id 014075Article in journal (Refereed) Published
Abstract [en]

The former storage ring CRYRING has been shipped from the Manne Siegbahn Laboratory in Stockholm to Darmstadt as a Swedish in-kind contribution to FAIR. At its new location downstream of ESR all ion species presently accessible in ESR can be transferred to CRYRING, in which ions with rigidities between 1.44 and 0.054 Tm can be stored. The original Swedish layout has been modified by reconfiguring the sequence of straight sections and by slightly increasing the circumference to ESR/2. Ions can be injected from ESR or from an independent 300 keV/u RFQ test injector. The instrumentation of the ring includes an RF drift tube system for acceleration and deceleration (1 T s(-1), with a possibility for an upgrade to 7 T s(-1)), electron cooling, a free experimental section, and both fast and slow extraction of ions. We report on the present progress of this project, give a prospective timeline, and summarize the new research which will be enabled by this project. First beam for commissioning of the storage ring is expected for 2015, final bakeout to restore ultrahigh vacuum conditions in 2016 and ion beams injected through ESR in similar to 2017.

Keywords
ion beam facilities, atomic physics, nuclear physics
National Category
Atom and Molecular Physics and Optics
Identifiers
urn:nbn:se:su:diva-127303 (URN)10.1088/0031-8949/2015/T166/014075 (DOI)000368901600076 ()2-s2.0-84977530295 (Scopus ID)
Available from: 2016-06-22 Created: 2016-03-01 Last updated: 2026-06-17Bibliographically approved
Thomas, R. D., Schmidt, H. T., Gatchell, M., Rosén, S., Reinhed, P., Löfgren, P., . . . Cederquist, H. (2015). DESIREE: Physics with cold stored ion beams. In: DR2013: Ninth international conference on dissociative recombination: theory, experiment, and applications. Paper presented at 9th International Conference on Dissociative Recombination: Theory, Experiment, and Applications, JUL 07-12, 2013, Paris, FRANCE. , 84, Article ID 01004.
Open this publication in new window or tab >>DESIREE: Physics with cold stored ion beams
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2015 (English)In: DR2013: Ninth international conference on dissociative recombination: theory, experiment, and applications, 2015, Vol. 84, article id 01004Conference paper, Published paper (Refereed)
Abstract [en]

Here we will briefly describe the commissioning of the Double ElectroStatic Ion Ring ExpEriment (DESIREE) facility at Stockholm University, Sweden. This device uses purely electrostatic focussing and deflection elements and allows ion beams of opposite charge to be confined under extreme high vacuum and cryogenic conditions in separate rings and then merged over a common straight section. This apparatus allows for studies of interactions between cations and anions at very low and well-defined centre-of-mass energies (down to a few meV) and at very low internal temperatures (down to a few K).

Series
EPJ Web of Conferences, ISSN 2100-014X
National Category
Physical Sciences Chemical Sciences
Identifiers
urn:nbn:se:su:diva-117061 (URN)10.1051/epjconf/20158401004 (DOI)000351835100004 ()
Conference
9th International Conference on Dissociative Recombination: Theory, Experiment, and Applications, JUL 07-12, 2013, Paris, FRANCE
Note

AuthorCount:35;

Available from: 2015-05-11 Created: 2015-05-06 Last updated: 2022-02-23Bibliographically approved
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