Applications



Amplifier | OPCPA seeding

Coherent THz generation

Multiphoton microscopy

Time-resolved spectroscopy

Pump-probe measurements

Materials processing

Thin-film metrology



Extraordinary Features



Integrated pump source

Maximum passive stability

Low noise

Ultrashort pulses

Extra compact footprint




 

FUSION™



Maximum flexibility and fully integrated Ti:S oscillator

FUSION™ is a model range of ultra compact Ti:Sapphire oscillators combining integrated design and yet customer accessibility ensuring maximum stability and ease of operation. All FUSION™ models make use of our patented Dispersive Mirror (DM) technology, which is specifically designed for broadband intracavity group delay dispersion compensation. The low-loss high-efficiency cavity design enables a broad range of output power levels with versions starting from 150 mW up to high end versions with more than 800 mW of mode-locked output power. All power levels are available with pulses of either 50, 20 or 10 fs and less in duration.

The extremely compact footprint includes a high reliability pump module and offers outmost flexibility in custom specifications. FEMTOLOCK™ repetition rate stabilization, tunability in bandwidth as well as custom center wavelength are a small selection of a rich list of features available with the FUSION™. The FUSION™ is designed for demanding applications including seeding of amplifier chains, coherent THz generation, time resolved spectroscopy as well as multiphoton processes, benefiting from more than 1 Megawatt of peak power.

Product Leaflet (pdf)


  FEMTOSOURCE™
  FUSION™
  20
M1
PRO
BB
Attoscience CEP-Stabilisation    
Few-Cycle Pulses    
High Harmonic Generation    
Imaging THz-Imaging  
Optical Coherence Tomography (OCT)  
Microscopy  
Ultrafast Spectroscopy Synchrotron and FEL experiments  
Solid state
Liquid  
Gas phase    
THz-Spectroscopy  
Materials Processing Waveguide writing    
Dielectrics    
Semiconductors    
Metals    
Polymeres  
Amplifier Seeding High contrast  
High peak power  
Repetition rate synchronization  
Non scientific workstations