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Ultrafast electron microscopy is, essentially, a pump-probe technique where an ultrafast laser pulse excites the material and a delayed electron pulse detects it.
Femtosecond laser writing enables vacancy-related color centers writing in silicon carbide and gallium nitride, relevant for applications in quantum technologies.
Terahertz (THz) radiation is extensively used to study the dynamics of collective motions in solids and liquids or image optically non-transparent samples.
Femtosecond lasers offer exceptional presicion and minimal thermal damage; thus, they can be applied as treating and surgical tools in such medical disciplines as ophthalmology.
The HARPIA complete ultrafast spectroscopy system performs a variety of sophisticated time-resolved spectroscopy measurements in a compact footprint.
ORPHEUS collinear optical parametric amplifier is an invaluable tool for ultrafast spectroscopy, nonlinear microscopy, and microstructuring applications.
PHAROS and CARBIDE industrial-grade femtosecond lasers and FLINT oscillators.
One of the most sophisticated and intriguing applications of high-energy femtosecond pulses is the process of high harmonics generation (HHG).
Highly focused ultrashort pulses enable volume modification of transparent materials, such as glass, sapphire, and other crystals.
Sum-frequency generation (SFG) spectroscopy is used to assess the vibrational properties of surfaces and interfaces with a monolayer sensitivity.
The industrial-grade optical parametric amplifier I-OPA series marks a new era of simplicity in the world of tunable wavelength femtosecond light sources.
ORPHEUS-F is a hybrid optical parametric amplifier, combining the short pulse duration produced by a non-collinear OPA.
Laser-induced transient grating (LITG) spectroscopy is a pump-probe technique that utilizes laser interference instead of a single beam to excite the medium.
Automated and customizable harmonic generators, second harmonic bandwidth compressors.
ORPHEUS-MIR is an OPA optimized for the efficient generation of broad-bandwidth mid-IR pulses. Its well-suited for high-energy and high-power lasers.
The ORPHEUS series of femtosecond optical parametric amplifiers (OPAs) for Yb lasers, industrial-grade OPAs, and OPA-based sources.
The HARPIA comprehensive spectroscopy system for time-resolved spectroscopy.
CEP determines the accuracy of high-energy and attosecond science experiments and spectroscopy measurements, thus requires high attention.
A synchronized laser system enables time-resolved experiments and can also be used as a synchronized switch for other physical variables, such as a magnetic field.
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