we are glad to provide you — after a fairly long break related to a complete renewal of our institute website — with a new 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
Structured Illumination Ptychography boosts Table-Top Nanoscale Imaging in the Extreme Ultraviolet
Microscopy with extreme ultraviolet (EUV) radiation holds promise for high-resolution imaging with excellent material contrast, due to the short wavelength and numerous element-specific absorption edges available in this spectral range. At the same time, EUV radiation has significantly larger penetration depths than electrons.
By combining a high photon-flux, table-top EUV source, structured EUV illumination in a scanning lensless imaging setup, and advanced computational Ptychography algorithms, an important breakthrough has recently been achieved by researchers at the HI-Jena.
A record-high spatial resolution of 16 nm has been demonstrated in combination with highly-accurate amplitude- and phase-imaging over wide fields of view [1]. In a first demonstration, the complex transmission of an integrated circuit (part of a solid-state disc) was precisely reconstructed as shown in fig. 1 a). By calculating the scattering quotient as the ratio of the observed phase shift and attenuation in each pixel, the nanoscale material composition is identified, as shown in fig. 1 b).
So far, high-performance lensless imaging at short wavelengths was restricted to large-scale facilities, where beam time is valuable and scarce. The presented experiments utilizing laser-generated coherent EUV radiation (high order harmonics) demonstrate that such capabilities get now available in compact table-top setups, which can be implemented in standard research laboratories but also in industrial or clinical environments.
Potential applications are found in materials and life sciences and many other areas. For example, high-resolution studies of the composition and the nano-structure of compound battery materials or the investigation of sub-cellular structural and chemical changes caused by diseases or infections get feasible. The highly-accessible setups will facilitate in-house, rapid-cycle, and fast-feedback studies without the need for travel and beam times and will thus speed up future developments in many fields.
Encouraging results have already been obtained when imaging microorganisms in the novel XUV microscope [2]. Two dried model specimens: germlings of a fungus (Aspergillus nidulans), and bacteria (Escherichia coli) cells have been investigated with a half-period spatial resolution of 58 nm. Again a scattering quotient micrograph uncovers the composition of the sample averaged along the propagation direction in each pixel of the image. In both investigated samples, different biological compositions (such as proteins, lipids, and hydrocarbons) have been obtained and successfully assigned to the internal functional units of the respective microorganisms. Example images for E. coli bacteria are shown in fig. 2. This first demonstration underlines the potential of imaging in the extreme ultraviolet spectral region and opens up new opportunities for life-science applications.
Mit einem neuartigen Verfahren lassen sich Laserstrahlen berührungsfrei in der Luft ablenken. Das dabei eingesetzte unsichtbare optische Gitter aus Luft ist nicht nur…
Philip Pfäfflein wurde für sein Poster “Precision x-ray spectroscopy of He-like uranium employing metallic magnetic calorimeter detectors” mit einem Posterpreis der …
In einem kürzlich erschienenen Artikel zeigt ein internationales Forscherteam des Helmholtz-Instituts Jena, des GSI Helmholtzzentrums für Schwerionenforschung, der…
Das Helmholtz-Institut Jena unterstützt das diesjährige MINT-Festival in Jena, mit dem Schüler*innen aller Altersstufen für Mathematik, Informatik, Naturwissenschaften…
Kirsche A.
Exploring and pushing the boundaries of tunable and waveguide-based high harmonic sources
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Friedrich-Schiller-Universität Jena;
2024 Dec..
[File]
Kirsche A.
Exploring and pushing the boundaries of tunable and waveguide-based high harmonic sources
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Friedrich-Schiller-Universität Jena;
2024 Dec..
[File]
Ramakrishna S.
Interaction of vector light with atoms
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Friedrich-Schiller-Universität Jena;
2024 Nov..
[File]
Ramakrishna S.
Interaction of vector light with atoms
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Friedrich-Schiller-Universität Jena;
2024 Nov..
[File]
Harsh H.
Bright and stable Betatron beams from laser-driven plasma Wakefield
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Friedrich-Schiller-Universität Jena;
2024 Oct..
[File]
Harsh H.
Bright and stable Betatron beams from laser-driven plasma Wakefield
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Friedrich-Schiller-Universität Jena;
2024 Oct..
[File]
Eschen W.
Material-specific and high-resolution imaging using extreme ultraviolet ptychography
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Friedrich-Schiller-Universität Jena;
2024 Oct..
[File]
Eschen W.
Material-specific and high-resolution imaging using extreme ultraviolet ptychography
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Friedrich-Schiller-Universität Jena;
2024 Oct..
[File]
Rajhans S.
Few-cycle laser pulses for compact plasma accelerators
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Friedrich-Schiller-Universität Jena;
2024 Sep..
[File]
Rajhans S.
Few-cycle laser pulses for compact plasma accelerators
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Friedrich-Schiller-Universität Jena;
2024 Sep..
[File]
Liu F.
Strong field dynamic in laser-induced processes
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Friedrich-Schiller-Universität Jena;
2024 Sep..
[File]
Liu F.
Strong field dynamic in laser-induced processes
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Friedrich-Schiller-Universität Jena;
2024 Sep..
[File]
Sikorski P.
Signatures of radiation reaction in electron-beam laser collisions
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Friedrich-Schiller-Universität Jena; Physikalisch-Astronomische Fakultät;
2024 Jul..
Wiesner F.
Spektroskopische Kohärenztomographie im extrem ultravioletten Spektralbereich
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Friedrich-Schiller-Universität Jena;
2024 May.
[File]
Wiesner F.
Spektroskopische Kohärenztomographie im extrem ultravioletten Spektralbereich
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Friedrich-Schiller-Universität Jena;
2024 May.
[File]
Almassarani M.
Sub-picosecond dynamics during relativistic laser-plasma interaction
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Friedrich-Schiller-Universität Jena;
2024 May.
[DOI][File]
Almassarani M.
Sub-picosecond dynamics during relativistic laser-plasma interaction
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Friedrich-Schiller-Universität Jena;
2024 May.
[DOI][File]
Recent publications
Valialshchikov M,
Karbstein F,
Seipt D,
Zepf M.
Numerical optimization of quantum vacuum signals.
Physical review / D.
2024 Oct.;
110(7):076009.
[DOI][File]
Gies H,
Schirrmeister J.
Renormalization flow of nonlinear electrodynamics.
Physical review / D.
2024 Oct.;
110(7):076010.
[DOI][File]
Abramowicz H,
Almanza Soto M,
Altarelli M,
Assmann R,
Athanassiadis A,
Avoni G,
Behnke T,
Benettoni M,
Benhammou Y,
Bhatt J,
Blackburn T,
Blanch C,
Bonaldo S,
Boogert S,
Borysov O,
Borysova M,
Boudry V,
Breton D,
Brinkmann R,
Bruschi M,
Burkart F,
Büßer K,
Cavanagh N,
Dal Corso F,
Decking W,
Deniaud M,
Diner O,
Dosselli U,
Elad M,
Epshteyn L,
Esperante D,
Ferber T,
Firlej M,
Fiutowski T,
Fleck K,
Fuster-Martinez N,
Gadow K,
Gaede F,
Gallas A,
Garcia Cabrera H,
Gerstmayr E,
Ghenescu V,
Giorato M,
Golubeva N,
Grojean C,
Grutta P,
Grzelak G,
Hallford J,
Hartman L,
Heinemann B,
Heinzl T,
Helary L,
Hendriks L,
Hoffmann M,
Horn D,
Huang S,
Huang X,
Idzik M,
Irles A,
Jacobs R,
King B,
Klute M,
Kropf A,
Kroupp E,
Lahno H,
Lasagni Manghi F,
Lawhorn J,
Levanon A,
Levi A,
Levinson L,
Lévy A,
Levy I,
Liberman A,
Liss B,
List B,
List J,
Lohmann W,
Maalmi J,
Madlener T,
Malka V,
Marsault T,
Mattiazzo S,
Meloni F,
Miron D,
Morandin M,
Moron J,
Nanni J,
Neagu AT,
Negodin E,
Paccagnella A,
Pantano D,
Pietruch D,
Pomerantz I,
Pöschl R,
Potlog PM,
Prasad R,
Quishpe R,
Ranken E,
Ringwald A,
Roich A,
Salgado F,
Santra A,
Sarri G,
Sävert A,
Sbrizzi A,
Schmitt S,
Schulthess I,
Schuwalow S,
Seipt D,
Simi G,
Soreq Y,
Spataro D,
Streeter M,
Swientek K,
Tal Hod N,
Teter T,
Thiebault A,
Thoden D,
Trevisani N,
Urmanov R,
Vasiukov S,
Walker S,
Warren M,
Wing M,
Yap YC,
Zadok N,
Zanetti M,
Żarnecki AF,
Zbińkowski P,
Zembaczyński K,
Zepf M,
Zerwas D,
Ziegler W,
Zuffa M.
Technical Design Report for the LUXE experiment.
European physical journal special topics.
2024 Oct.;
2331709.
[DOI][File]
Maiorova AV,
Karlovets D,
Fritzsche S,
Surzhykov A,
Stöhlker T.
Coulomb excitation of hydrogen atoms by vortex ion beams.
New journal of physics.
2024 Sep.;
26(9):093010 -.
[DOI][File]
Togawa M,
Kühn S,
Shah C,
Zaytsev VA,
Oreshkina NS,
Buck J,
Bernitt S,
Steinbrügge R,
Seltmann J,
Hoesch M,
Keitel CH,
Pfeifer T,
Leutenegger MA,
López-Urrutia JRC.
High-accuracy measurements of core-excited transitions in light Li-like ions.
Physical review / A.
2024 Sep.;
110(3):L030802.
[DOI][File]
Bernecker R,
Baghdasaryan B,
Fritzsche S.
High-dimensional maximally entangled photon pairs in parametric down-conversion.
Physical review / A.
2024 Sep.;
110(3):033718.
[DOI][File]
Röder S,
Zobus Y,
Major Z,
Bagnoud V.
Improving the rising edge of the temporal contrast of PHELIX by spatial conditioning in an unfolded stretcher.
Optics express.
2024 Sep.;
32(20):35713.
[DOI][File]
Ramakrishna S,
Wu Z,
Maiorova A,
Fritzsche S.
Interaction of Hermite–Gaussian Beams with a Macroscopic Atomic Target.
Annalen der Physik.
2024 Sep.;
536(9):2400048.
[DOI][File]
Gies H,
Heinzel P,
Laufkötter J,
Picciau M.
Quantum field theories of relativistic Luttinger fermions.
Physical review / D.
2024 Sep.;
110(6):065001.
[DOI][File]
Kennedy JP,
Coughlan M,
Fitzpatrick CRJ,
Huddleston HM,
Smyth J,
Breslin N,
Donnelly H,
Villagomez-Bernabe B,
Rosmej O,
Currell F,
Stella L,
Riley D,
Zepf M,
Yeung M,
Lewis CLS,
Dromey B.
Real-Time Observation of Frustrated Ultrafast Recovery from Ionization in Nanostructured SiO 2 Using Laser-Driven Accelerators.
Physical review letters.
2024 Sep.;
133(13):135001.
[DOI][File]