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Dear colleagues and friends of the HI-Jena,

we are glad to provide you with the March 2023 issue of the newsletter of the Helmholtz Institute Jena.
Below you find informations and news about recent activities of our institute.

Kind Regards,
Helmholtz Institute Jena

New Regimes of Nuclear Resonance Excitation: First Experiments at the European XFEL

Ralf Röhlsberger for the MCLS* collaboration and for the 45Sc collaboration

The nuclear resonances of Mössbauer isotopes provide extremely narrow energy references for high-resolution spectroscopy. This qualifies them for applications in condensed matter physics as well as for studies in fundamental physics and extreme metrology. Since the pioneering experiment by E. Gerdau et al. [1] at the storage ring DORIS (DESY, Hamburg), the technique of nuclear resonance scattering has found widespread applications at hard X-ray synchrotron radiation sources worldwide. Its implementation and use at hard X-ray laser sources started with one experiment performed at SACLA in Japan reported so far [2].

In 2022 we could perform the first experiments on nuclear resonance scattering at the European XFEL. One study was conducted at the 14.4 keV resonance of 57Fe aiming at applications in x-ray quantum optics in a collaboration with researchers from Friedrich-Schiller-Universität Jena, the Max Planck Institute of Nuclear Physics in Heidelberg, the University of Freiburg and DESY. The other experiment, initiated by researchers from Argonne National Laboratory and Texas A&M University in College Station, USA, succeeded to achieve the first photonic excitation of the ultranarrow 12.4 keV resonance of 45Sc for future applications in extreme metrology.

Employing the 14.4 keV nuclear resonance of 57Fe we aimed at the realization of multiphoton excitation in forward scattering from an ensemble of Mössbauer nuclei. Due to the radiative coupling between the nuclei in the ensemble, an enhanced decay rate (superradiance, SR) and collective energy shifts (collective Lamb shift, CLS) appear as characteristic signatures in the scattered light. So far, SR and CLS have been extensively studied in the single-photon excitation regime at synchrotrons. Here we were aiming to reveal the spectral properties of the nuclear exciton under multiphoton excitation conditions, especially with the goal to determine the CLS as function of the number of photons that resonantly excite the nuclear ensemble. So far, the spectral properties under multiphoton excitation conditions have neither been approached theoretically nor experimentally. Our experiment in 2022 was mainly devoted to reliably detect the nuclear forward scattering signal in the presence of the extremely intense radiation pulses of the European XFEL. To our great surprise, under these conditions a 8 mm thick 57Fe foil appeared to be only 1 mm thick, as illustrated in Fig.1. The microscopic mechanism for this unique behavior is still under investigation.

The 12.4 keV resonance of 45Sc is one of the narrowest nuclear resonances known with a half width of 1.4 femto-eV. In several aspects this isotope is superior to the 8.3 eV 229mTh isomer for extreme metrology applications. The scientific potential of the 45Sc resonance together with the possibility to resonantly excite it by photons from modern accelerator-based hard x-ray sources was identified more than 30 years ago [3]. However, it escaped detection until now, mostly due to the lack of hard x-ray sources with sufficient spectral flux. In this experiment the nuclear resonance of 45Sc was successfully observed by irradiation of a Sc metal foil with 12.4-keV x-ray pulses of sub-millisecond duration and detection of the 4 keV delayed K-fluorescence that followed internal nuclear conversion. The resonance energy, which was known before the experiment to an uncertainty of +/- 50 eV only was determined with sub-eV accuracy. Our results set the stage for further studies of this isotope with promising applications in fundamental physics and extreme metrology.

Both experiments greatly benefitted from the high pulse repetition rate in conjunction with hard x-ray self-seeding (HXRSS) at the respective nuclear resonance energies, providing the spectral flux for efficient nuclear resonance excitation. A unique pulse pattern will be extremely beneficial for future studies at the 45Sc resonance, in particular for the analysis of hyperfine interactions via nuclear forward scattering.

References

* Multiphoton Collective Lamb Shift
[1] E. Gerdau et al., Nuclear Bragg diffraction of synchrotron radiation in yttrium iron garnet, Phys. Rev. Lett. 54, 835 (1985).
[2] A. I. Chumakov et al., Superradiance of an ensemble of nuclei excited by a free electron laser, Nature Physics 14, 261 (2018).
[3] Yu. V. Shvyd’ko and G. V. Smirnov, On the direct measurement of nuclear resonance parameters of long-lived (>=1s) isomers. Nucl. Instrum. Methods Phys. Res. B 51, 452 (1990).

News and Announcements

Semiannual Meeting of the HI Jena

We kindly invite you to the Helmholtz Institute Jena semiannual palaver. The detailed agenda can be found here. Zoom link: 670 9407 9947
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Team of the Helmholtz Institute Jena one of the winners at the DIHP Elevator Pitch 2023

Five teams awarded at the Ideas Pitch 2023 at the "Digital Innovation Hub Photonics" (DIHP)  To support start-ups and fresh ideas in the field of optics and photonics:…
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Robert Klas is awarded Hugo Geiger Prize 2023

Dr. Robert Klas, from Helmholtz Institute Jena and Fraunhofer Institute for Applied Optics and Precision Engineering IOF, has received this year’s “Hugo Geiger Award…
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10th Joint RS-APS & HGS-HIRe Lecture Week on APPA Research at FAIR

At the end of February 2023 the Research School of Advanced Photon Science (RS-APS) of the Helmholtz Institute Jena organized already its 10th edition of its “Joint…
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Upcoming events

Upcoming events

DateTitleLocation

Recently finished theses

Riedel, R.
Pulse Metrology Tool and Burst-Mode Laser Amplifier for the Free-Electron Laser in Hamburg
Universität Hamburg; Fakultät für Mathematik, Informatik und Naturwissenschaften
December 2013
File:https://ediss.sub.uni-hamburg.de/handle/ediss/5213
Ecker, B.
Entwicklung kohärenter Lichtquellen im XUV-Regime
Johannes Gutenberg-Universität Mainz; Fachbereich 08 Physik, Mathematik und Informatik
November 2013
File:http://doi.org/10.25358/openscience-1781
Hahn, C.
Energie- und polarisationssensitiver Nachweis harter Röntgenstrahlung an Hochintensitätslasern
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
October 2013
File:https://www.hi-jena.de//fileadmin/content/publications/chahn_msc.pdf
Geithner, R.
Optimierung eines kryogenen Stromkomparators für den Einsatz als Strahlmonitor
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
October 2013
File:https://www.db-thueringen.de/receive/dbt_mods_00023556
Rathje, T.
Photodissoziation des Wasserstoffmolekülions durch Einzelzyklenlaserpulse
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
October 2013
File:https://www.hi-jena.de//fileadmin/content/publications/trathje_phd.pdf
Seegert, N.
Quantum Reflection at Strong Magnetic Fields
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
September 2013
File:https://www.hi-jena.de//fileadmin/content/publications/nseegert_msc.pdf
Herdrich, M. O.
Ionisationsquerschnitte von Uranionen in Speicherringen
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
September 2013
File:https://www.hi-jena.de//fileadmin/content/publications/mherdrich_bsc.pdf
Müller, R. A.
Angular and Polarisation Properties of Bremsstrahlung Radiation in the Short-Wavelength Limit
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
August 2013
File:https://www.hi-jena.de//fileadmin/content/publications/rmueller_bsc.pdf
Blinne, A.
Paarproduktion in rotierenden elektrischen Feldern
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
March 2013
File:https://www.hi-jena.de//fileadmin/content/publications/ablinne_msc.pdf
Kienel, M.
Passive Coherent Beam Combining of Temporally Cascaded Pulses
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
January 2013
File:https://www.hi-jena.de//fileadmin/content/publications/mkienel_msc.pdf
Lötzsch, R.
Bent crystal X-ray optics for the diagnosis and applications of laser-produced plasmas
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
November 2012
File:https://www.db-thueringen.de/receive/dbt_mods_00022009
Aurand, B.
Untersuchungen zu Mechanismen der Laser-Teilchenbeschleunigung
Johannes Gutenberg-Universität Mainz; Fachbereich 08 Physik, Mathematik und Informatik
June 2012
File:http://doi.org/10.25358/openscience-2060
Fuchs, S.
Optische Kohärenztomografie mit kurzen Wellenlängen
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
April 2012
File:https://www.hi-jena.de//fileadmin/content/publications/sfuchs_dip.pdf
Märtin, R.
Röntgenpolarimetrie angewandt zur Untersuchung der Bremsstrahlung spinpolarisierter Elektronen
Ruprecht-Karls-Universität; Fakultät für Physik und Astronomie
September 2011
File:http://archiv.ub.uni-heidelberg.de/volltextserver/12675/
Hahn, C.
Charakterisierung ortsauflösender Halbleiterdetektoren für harte Röntgenstrahlung
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
September 2011
File:https://www.hi-jena.de//fileadmin/content/publications/chahn_bsc.pdf
Reuter, M.
Interferometric Probing of Laser Generated Plasmas for Electron Acceleration
Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät
July 2011
File:https://www.hi-jena.de//fileadmin/content/publications/mreuter_dip.pdf

Recent publications

Tamer, I.; Hellwing, M.; Azamoum, Y.; Hornung, M.; Keppler, S.; Schorcht, F.; Hein, J.; Kaluza, M.
Few-cycle fs-pumped NOPA with passive ultrabroadband spectral shaping
Optics Express, 28 :19034
2020
DOI:10.1364/OE.388344
Buldt, J.; Mueller, M.; Stark, H.; Jauregui, C.; Limpert, J.
Fiber laser-driven gas plasma-based generation of THz radiation with 50-mW average power
Applied Physics B, 126 :2
2020
DOI:10.1007/s00340-019-7353-2
Mayer, A.; Grosinger, W.; Fellinger, J.; Winkler, G.; Perner, L.; Droste, S.; Salman, S.; Li, C.; Heyl, C.; Hartl, I.; Heckl, O.
Flexible all-PM NALM Yb:fiber laser design for frequency comb applications: Operation regimes and their noise properties
Optics Express, 28 :18946
2020
DOI:10.1364/OE.394543
Agababaev, V.; Glazov, D.; Volotka, A.; Zinenko, D.; Shabaev, V.; Plunien, G.
g factor of the [(1s)2(2s)22p]2P3/2 state of middle-Z boronlike ions
X-Ray Spectrometry, 49 :143
January 2020
DOI:10.1002/xrs.3074
Li, L.; Koliyadu, J.; Donnelly, H.; Alj, D.; Delmas, O.; Ruiz-Lopez, M.; de la Rochefoucauld, O.; Dovillaire, G.; Fajardo, M.; Zhou, C.; Ruan, S.; Dromey, B.; Zepf, M.; Zeitoun, P.
High numerical aperture Hartmann wave front sensor for extreme ultraviolet spectral range
Optics Letters, 45 :4248
2020
DOI:10.1364/OL.396356
Shestaev, E.; Hoff, D.; Sayler, A. M.; Klenke, A.; Hädrich, S.; Just, F.; Eidam, T.; Jójárt, P.; Várallyay, Z.; Osvay, K.; Paulus, G.G.; Tünnermann, A.; Limpert, J.
High-power ytterbium-doped fiber laser delivering few-cycle, carrier-envelope phase-stable 100 µJ pulses at 100 kHz
Optics Letters, 45 :97
January 2020
DOI:10.1364/ol.45.000097
Herdrich, M.; Fleischmann, A.; Hengstler, D.; Allgeier, S.; Enss, C.; Trotsenko, S.; Morgenroth, T.; Schuch, R.; Weber, G.; Stöhlker, T.
High-precision X-ray spectroscopy of Fe ions in an EBIT using a micro-calorimeter detector: First results
X-Ray Spectrometry, 49 :184
January 2020
DOI:10.1002/xrs.3086
Gassner, T.; Gumberidze, A.; Trassinelli, M.; Hess, R.; Spillmann, U.; Banaś, D.; Blumenhagen, K.-H.; Bosch, F.; Brandau, C.; Chen, W.; Dimopoulou, C.; Förster, E.; Grisenti, R.; Hagmann, S.; Hillenbrand, P.-M.; Indelicato, P.; Jagodzinski, P.; Kämpfer, T.; Lestinsky, M.; Liesen, D.; Litvinov, Y.; Lötzsch, R.; Manil, B.; Märtin, R.; Nolden, F.; Petridis, N.; Sanjari, M.; Schulze, K.; Schwemlein, M.; Simionovici, A.; Steck, M.; Stöhlker, T.; Szabo, C.; Trotsenko, S.; Uschmann, I.; Weber, G.; Wehrhan, O.; Winckler, N.; Winters, D.; Winters, N.; Ziegler, E.; Beyer, H.
High-resolution wavelength-dispersive spectroscopy of K-shell transitions in hydrogen-like gold
X-Ray Spectrometry, 49 :204
January 2020
DOI:10.1002/xrs.3098
Stallkamp, N.; Ringleb, S.; Arndt, B.; Kiffer, M.; Kumar, S.; Paulus, G.; Quint, W.; Stöhlker, T.; Vogel, M.
HILITE-A well-defined ion target for laser experiments
Journal of Physics: Conference Series, 1412 :092009
2020
DOI:10.1088/1742-6596/1412/9/092009
Gumberidze, A.; Kozhuharov, C.; Zhang, R.; Trotsenko, S.; Kozhedub, Y.; Du, R.; Bois, H.; Beyer, F.; Blumenhagen, K.-H.; Brandau, C.; Bräuning-Demian, A.; Chen, W.; Forstner, O.; Gao, B.; Gassner, T.; Grisenti, R.; Hagmann, S.; Hillenbrand, P.-M.; Indelicato, P.; Kumar, A.; Lestinsky, M.; Litvinov, Y.; Petridis, N.; Schury, D.; Spillmann, U.; Trageser, C.; Trassinelli, M.; Tu, X.; Stöhlker, T.
Impact parameter sensitive study of inner-shell atomic processes in Xe54+, Xe52+ → Xe collisions
Journal of Physics: Conference Series, 1412 :142015
2020
DOI:10.1088/1742-6596/1412/14/142015
Rothhardt, J.; Bilal, M.; Beerwerth, R.; Volotka, A.; Hilbert, V.; Stöhlker, T.; Fritzsche, S.; Limpert, J.
Lifetime measurements of ultrashort-lived excited states in Be-like ions
X-Ray Spectrometry, 49 :165
January 2020
DOI:10.1002/xrs.3079
Hofbrucker, J.; Volotka, A. V.; Fritzsche, S.
Nonlinear Cooper minimum as a precise tool for understanding multiphoton photoionization
Journal of Physics: Conference Series, 1412 :152017
2020
DOI:10.1088/1742-6596/1412/15/152017
Panahiyan, S.
Nonlinearly charged dyonic black holes
Nuclear Physics B, 950 :114831
January 2020
DOI:10.1016/j.nuclphysb.2019.114831
Kang, H.; Chen, S.; Chu, W.; Yao, J.; Chen, J.; Jun Liu, X.; Cheng, Y.; Xu, Z.
Nonsequential double ionization of alkaline-earth metal atoms by intense mid-infrared femtosecond pulses
Optics Express, 28 :19325
2020
DOI:10.1364/OE.397488
Litvinov, Y.; Stöhlker, T.; Ma, X.; Zhang, Y.; Yamaguchi, T.
Nuclear physics research at heavy ion accelerators: Precision studies with stored and cooled exotic nuclei
Journal of Physics: Conference Series, 1401 :012001
2020
DOI:10.1088/1742-6596/1401/1/012001
Menz, E.; Hahn, C.; Pfäfflein, P.; Weber, G.; Stöhlker, T.
Performance of a scintillator-based ion detector for CRYRING@ESR
Journal of Physics: Conference Series, 1412 :232006
2020
DOI:10.1088/1742-6596/1412/23/232006
Buhr, T.; Stock, S. O.; Perry-Sassmannshausen, A.; Reinwardt, S.; Martins, M.; Ricz, S.; Mueller, A.; Fritzsche, S.; Schippers, S.
Photoionization of low-charged silicon ions
Journal of Physics: Conference Series, 1412 :152024
2020
DOI:10.1088/1742-6596/1412/15/152024
Deprince, J.; Bautista, M.; Fritzsche, S.; García, J.; Kallman, T.; Mendoza, C.; Palmeri, P.; Quinet, P.
Plasma-environment effects on K lines of astrophysical interest: III. IPs, K thresholds, radiative rates, and Auger widths in Fe IX - Fe XVI
Astronomy and Astrophysics, 635 :A70
2020
DOI:10.1051/0004-6361/201937088
Hollinger, R.; Gupta, D.; Zapf, M.; Karst, M.; Röder, R.; Uschmann, I.; Reislöhner, U.; Kartashov, D.; Ronning, C.; Spielmann, C.
Polarization dependent multiphoton absorption in ZnO thin films
Journal of Physics D: Applied Physics, 53 :055102
2020
DOI:10.1088/1361-6463/ab5372
Dmytriiev, D.; Sanjari, M.; Litvinov, Y.; Stöhlker, T.
Position sensitive resonant Schottky cavities for heavy ion storage rings
Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms, 463 :320
January 2020
DOI:10.1016/j.nimb.2019.04.074
Karbstein, F.
Probing Vacuum Polarization Effects with High-Intensity Lasers
Particles, 3 :39
January 2020
DOI:10.3390/particles3010005
Xu, X.; Zhang, Y.; Zhang, H.; Lu, H.; Zhou, W.; Zhou, C.; Dromey, B.; Zhu, S.; Zepf, M.; He, X.; Qiao, B.
Production of 100-TW single attosecond x-ray pulse
Optica, 7 :355
2020
DOI:10.1364/OPTICA.385147
Aleshire, C.; Steinkopff, A.; Jauregui, C.; Klenke, A.; Tünnermann, A.; Limpert, J.
Simplified design of optical elements for filled-aperture coherent beam combination
Optics Express, 28 :21035
2020
DOI:10.1364/OE.394084
Hendi, S.; Tavakkoli, A.; Panahiyan, S.; Panah, B.; Hackmann, E.
Simulation of geodesic trajectory of charged BTZ black holes in massive gravity
European Physical Journal C, 80 :524
2020
DOI:10.1140/epjc/s10052-020-8065-9
Lestinsky, M.; Andelkovic, Z.; Bai, M.; Bräuning-Demian, A.; Chetvertkova, V.; Fedotova, S.; Geithner, O.; Geithner, W.; Gorda, O.; Herfurth, F.; Kalinin, A.; Källberg, A.; Litvinov, S.; Menz, E.; Mohr, K.; Sanchez, R.; Stöhlker, T.; Vorobjev, G.; Weinrich, U.
Status of CRYRING@ESR and preparations for first experiments
Journal of Physics: Conference Series, 1412 :23007
2020
DOI:10.1088/1742-6596/1412/23/232007
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