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Dive into the research topics where Maximilian Ingo Lasserus is active.

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Featured researches published by Maximilian Ingo Lasserus.


Ultramicroscopy | 2018

Modelling electron beam induced dynamics in metallic nanoclusters

Daniel Knez; Martin Schnedlitz; Maximilian Ingo Lasserus; Alexander Schiffmann; Wolfgang E. Ernst; Ferdinand Hofer

We present a computational scheme to simulate beam induced dynamics of atoms in surface dominated, metallic systems. Our approach is based on molecular dynamics and Monte Carlo techniques. The model is tested with clusters comprised of either Ni, Ag or Au. We vary their sizes and apply different electron energies and cluster temperatures to elucidate fundamental relations between these experimental parameters and beam induced displacement probabilities. Furthermore, we demonstrate the capability of our code to simulate beam driven dynamics by using Ag and Au clusters as demonstration systems. Simulations of beam induced displacement and sputtering effects are compared with experimental results obtained via scanning transmission electron microscopy. The clusters in question are synthesised with exceptional purity inside inert superfluid He droplets and deposited on amorphous carbon supports. The presented results may help to understand electron beam driven processes in metallic systems.


Journal of Chemical Physics | 2018

Spectroscopy of gold atoms and gold oligomers in helium nanodroplets

Roman Messner; Alexander Schiffmann; Johann Valentin Pototschnig; Maximilian Ingo Lasserus; Martin Schnedlitz; Florian Lackner; Wolfgang E. Ernst

The 6p 2P1/2 ← 6s 2S1/2 and 6p 2P3/2 ← 6s 2S1/2 transitions (D lines) of gold atoms embedded in superfluid helium nanodroplets have been investigated using resonant two-photon ionization spectroscopy. Both transitions are strongly blue-shifted and broadened due to the repulsive interaction between the Au valence electron and the surrounding helium. The in-droplet D lines are superimposed by the spectral signature of Au atoms relaxed into the metastable 2D states. These features are narrower than the in-droplet D lines and exhibit sharp rising edges that coincide with bare atom transitions. It is concluded that they originate from metastable 2D state AuHen exciplexes that have been ejected from the helium droplets during a relaxation process. Interestingly, the mechanism that leads to the formation of these complexes is suppressed for very large helium droplets consisting of about 2 × 106 He atoms, corresponding to a droplet diameter on the order of 50 nm. The assignment of the observed spectral features is supported by ab initio calculations employing a multiconfigurational self-consistent field method and a multi-reference configuration interaction calculation. For large helium droplets doped with Au oligomers, excitation spectra for mass channels corresponding to Aun with n = 2, 3, 4, 5, 7, and 9 are presented. The mass spectrum reveals even-odd oscillations in the number of Au atoms that constitute the oligomer, which is characteristic for coinage metal clusters. Resonances are observed close by the in-droplet D1 and D2 transitions, and the corresponding peak forms are very similar for different oligomer sizes.


Nanoscale | 2018

Thermally induced alloying processes in a bimetallic system at the nanoscale: AgAu sub-5 nm core–shell particles studied at atomic resolution

Maximilian Ingo Lasserus; Martin Schnedlitz; Daniel Knez; Roman Messner; Alexander Schiffmann; Florian Lackner; Andreas W. Hauser; Ferdinand Hofer; Wolfgang E. Ernst


Chemistry of Materials | 2018

Stability of Core–Shell Nanoparticles for Catalysis at Elevated Temperatures: Structural Inversion in the Ni–Au System Observed at Atomic Resolution

Martin Schnedlitz; Maximilian Ingo Lasserus; Ralf Meyer; Daniel Knez; Ferdinand Hofer; Wolfgang E. Ernst; Andreas W. Hauser


Physical Chemistry Chemical Physics | 2017

Thermally induced breakup of metallic nanowires: experiment and theory

Martin Schnedlitz; Maximilian Ingo Lasserus; Daniel Knez; Andreas W. Hauser; Ferdinand Hofer; Wolfgang E. Ernst


Archive | 2018

Data for: Modelling electron beam induced dynamics in metallic nanoclusters

Daniel Knez; Ferdinand Hofer; Wolfgang E. Ernst; Alexander Schiffmann; Maximilian Ingo Lasserus; Martin Schnedlitz


EU Cost Action "MOLIM" Workshop : From Quantum Effects to Material Properties at the Nanoscale | 2018

Temperature Studies of Ni@Au and Co@Au Core@Shell Systems on the Nanoscale

Alexander Schiffmann; Martin Schnedlitz; Ralf Meyer; Maximilian Ingo Lasserus; Roman Messner; Florian Lackner; Daniel Knez; Ferdinand Hofer; Andreas W. Hauser; Wolfgang E. Ernst


DPG-Frühjahrstagung: Sektion Atome, Moleküle, Quantenoptik und Plasmen (SAMOP) | 2017

Gold doped helium nanodroplets: Electronic spectroscopy from atoms to nanoparticles

Florian Lackner; Maximilian Ingo Lasserus; Roman Messner; Martin Schnedlitz; Alexander Volk; Philipp Thaler; Wolfgang E. Ernst


Conference on Quantum Fluid Clusters | 2017

Gold doped helium nanodroplets: from atomic spectroscopy to localized surface plasmon resonances in deposited nanoparticles

Florian Lackner; Roman Messner; Alexander Schiffmann; Maximilian Ingo Lasserus; Martin Schnedlitz; Daniel Knez; Georg Haberfehlner; Gerald Kothleitner; Ferdinand Hofer; Wolfgang E. Ernst


Castleman Symposium on Cluster Science | 2017

Metallic nanoparticles prepared in superfluid helium droplets: structure, phase transitions, alloy formation

Martin Schnedlitz; Maximilian Ingo Lasserus; Daniel Knez; Andreas W. Hauser; Ferdinand Hofer; Wolfgang E. Ernst

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Martin Schnedlitz

Graz University of Technology

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Wolfgang E. Ernst

Graz University of Technology

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Daniel Knez

Graz University of Technology

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Ferdinand Hofer

Graz University of Technology

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Alexander Schiffmann

Graz University of Technology

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Andreas W. Hauser

Graz University of Technology

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Florian Lackner

Graz University of Technology

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Roman Messner

Graz University of Technology

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Gerald Kothleitner

Graz University of Technology

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Ralf Meyer

Graz University of Technology

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