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Fabian Weise

Explore the profile of Fabian Weise including associated specialties, affiliations and a list of published articles. Areas
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Articles 12
Citations 58
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Recent Articles
1.
Tanyag R, Bacellar C, Pang W, Bernando C, Gomez L, Jones C, et al.
J Chem Phys . 2022 Feb; 156(4):041102. PMID: 35105059
Advancements in x-ray free-electron lasers on producing ultrashort, ultrabright, and coherent x-ray pulses enable single-shot imaging of fragile nanostructures, such as superfluid helium droplets. This imaging technique gives unique access...
2.
Tanyag R, Bernando C, Jones C, Bacellar C, Ferguson K, Anielski D, et al.
Struct Dyn . 2016 Jan; 2(5):051102. PMID: 26798821
Lensless x-ray microscopy requires the recovery of the phase of the radiation scattered from a specimen. Here, we demonstrate a de novo phase retrieval technique by encapsulating an object in...
3.
Siefermann K, Pemmaraju C, Neppl S, Shavorskiy A, Cordones A, Vura-Weis J, et al.
J Phys Chem Lett . 2015 Aug; 5(15):2753-9. PMID: 26277975
Understanding interfacial charge-transfer processes on the atomic level is crucial to support the rational design of energy-challenge relevant systems such as solar cells, batteries, and photocatalysts. A femtosecond time-resolved core-level...
4.
Shavorskiy A, Neppl S, Slaughter D, Cryan J, Siefermann K, Weise F, et al.
Rev Sci Instrum . 2014 Oct; 85(9):093102. PMID: 25273702
An apparatus for sub-nanosecond time-resolved ambient-pressure X-ray photoelectron spectroscopy studies with pulsed and constant wave X-ray light sources is presented. A differentially pumped hemispherical electron analyzer is equipped with a...
5.
Gomez L, Ferguson K, Cryan J, Bacellar C, Tanyag R, Jones C, et al.
Science . 2014 Aug; 345(6199):906-9. PMID: 25146284
Helium nanodroplets are considered ideal model systems to explore quantum hydrodynamics in self-contained, isolated superfluids. However, exploring the dynamic properties of individual droplets is experimentally challenging. In this work, we...
6.
Weise F, Neumark D, Leone S, Gessner O
Opt Express . 2012 Nov; 20(24):26167-75. PMID: 23187472
Element-specific contrast enhancement in tabletop coherent diffractive imaging (CDI) is demonstrated by employing an ultrafast extreme ultraviolet (XUV) light source with tunable photon energy. By combining two measurements performed at...
7.
Weise F, Achazi G, Lindinger A
Phys Chem Chem Phys . 2011 Apr; 13(19):8621-6. PMID: 21479324
We present ultrafast polarization pulse shaping through a micro structured hollow core photonic crystal fiber. The pulses are shaped in pulse sequences in which the energy, distance, phases, and chirps...
8.
Achazi G, Patas A, Weise F, Pawlowska M, Lindinger A
Appl Opt . 2011 Feb; 50(6):915-23. PMID: 21343971
We present a method to reconstruct the pulse shape of polarization-shaped femtosecond laser pulses after a hollow-core photonic crystal fiber by reflecting the pulses back through the fiber. First, a...
9.
Weise F, Lindinger A
Opt Lett . 2009 Apr; 34(8):1258-60. PMID: 19370136
We present a femtosecond pulse shaper setup that is capable of shaping the phase, amplitude, and polarization simultaneously and independently. The modulator utilizes four liquid crystal arrays, a pair of...
10.
Weber S, Plewicki M, Weise F, Lindinger A
J Chem Phys . 2008 May; 128(17):174306. PMID: 18465921
We present a routine for calculating and producing customized/parametric femtosecond laser pulses for investigating molecular processes involving the polarization. It is applied on the ionization of NaK molecules by feedback-loop...