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develops and uses ultra-fast and ultra-intense lasers and laser-driven short-pulse light sources in a broad spectral range in combination with methods of nonlinear spectroscopy. With its research, MBI
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on photoinduced dynamics in polyatomic molecules of astrophysical interest. Experiments will be carried out using pulsed nanosecond lasers and velocity map imaging at the Ultrafast Lasers Center of the UCM
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-electricity conversion in silicon-based photovoltaic devices. Using off-axis electron holography in a transmission electron microscope combined with ultrafast laser excitation and pulsed electron beams, the
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Electron Laser (EuXFEL) is an X-ray laser facility driven by a superconducting linear accelerator. It is currently the brightest X-ray source of its kind, enabling unprecedented discoveries in the physical
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ultrashort X-ray pulses. Consequently, the Lasers Group (LAS) is working on the design and implementation of laser-based THz sources with parameters, defined by the users’ requirements. The PhD project will be
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(typically pulsed UV laser pulses) electrons can be extracted from suitably polarized electrodes (Eapp). This process leads to the formation of solvated electrons e_solv^-, which are strongly reducing and can
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powerful laser pulses. At ARCNL, we are now thinking about light sources that radiate at even shorter wavelengths below 13.5 nm, which could open up a host of applications in future nanolithography
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equilibrium using femtosecond laser pulses and mid-/far-infrared excitation, directly targeting the crystal lattice as the origin of magnetic frustration. Time-resolved magneto-optical imaging then enables
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prototype ion trap for frequency metrology, demonstrating ion trapping and laser cooling for the first time at FEMTO-ST. A microfabricated SE ion trap was produced at the local MIMENTO facility, that recently
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at metal-oxide interfaces using nanosecond laser pulses and stroboscopic imaging and diffraction method to directly measure transient lattice distortions and phonon excitations. 2. Capture intermediate