Integra-HE: High Energy (4-7 mJ)

High Energy Ti:Sapphire Ultrafast Amplifiers

Highest energy with no special cooling
(such as Cryogenic or Deep TEC)

 40-130 fs, 1-3 ps   7 mJ @ 1 kHz   1-10 kHz 

1-3 kHz, 3-5 kHz, 10 kHz Systems Available

PDF_014_36x36.jpgDownload the datasheet

Jellemzők

  • High energy >7 mJ @ 1 kHz without special cooling (such as Cryogenic or Deep TEC)
  • Best choice for pumping multiple Optical Parametric Amplifiers
  • Choice of output pulse duration <40-100 fs, 1-3 ps
  • Choice of repetition rate 1-10 kHz
  • Ideal front-end amplifier for high power systems such as the Quantronix Hercules
  • Proven stability and reliability for high uptime in research environments

Alkalmazás

  • High Energy OPA Pumping: High energy to maximize OPA output throughout the entire tuning range   
  • Multiple OPA Pumping: High energy to support two or more OPAs simultaneously from one amplifier   
  • Harmonic Generation: First amplifier to deliver direct output of 400 nm, 266 nm, 200 nm wavelengths with integrated harmonic generation unit

LASER CONTROL UNIT / SOFTWARE

  • Advanced laser control electronics
  • Easy connectivity
  • Integrated delay generator
  • 6-channel timing (one already dedicated to Pockels cell)
  • Powerful laser control software
    • Runs on Windows-based OS (XP and newer)
    • Monitoring and display of real-time laser parameters
    • Multi-lingual support
    • Control of Pump Laser: current, frequency, trigger mode
    • Control of Amplifier: pulse energy, pulse duration

Integra-C_004_200x207.jpg

 

SPECIFICATIONS

  With Fiber Oscillator With Ti:Sapphire Oscillator
Integra-HE Model HE HE-V HE-X HE.USP/FS/PS HE-V.USP/FS/PS HE-X.USP/FS/PS
  Output Power1 7 W 6 W 5 W 7 W 6 W 5 W
  Repetition Rate 1-3 kHz 3-5 kHz 10 kHz 1-3 kHz 3-5 kHz 10 kHz
  Pulse Duration (FWHM)    
        Ultrashort Pulse (USP) N/A < 40 fs2
        Femtosecond (FS) 130 fs < 100 fs3
        Picosecond (PS) N/A 1-3 ps4
  Pump Laser  2 integrated diode-pumped solid state lasers

  1. Specification for constant output power in given repetition rate range.
  2. Requires a seed source with > 40 nm bandwidth.
  3. Requires a seed source with more than 15 nm bandwidth.
  4. Requires a > 200 mW seed source with < 10 nm bandwidth.