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Femtosecond Fiber Lasers
EFO
Ultrashort pulse duration down to 50 fs *
Small footprint *
Turn-key operation *
High stability *
Optional: benchtop version
Application
- Supercontinuum generation (pdf)
- Semiconductor device testing (pdf)
- Amplifier systems seeding
- Terahertz generation and detection
- Multi-photon microscopy
- Frequency metrology (pdf)
- Ultrafast spectroscopy
- "Pump-probe" spectroscopy
- Optical coherent tomography
Fiber-based femtosecond lasers offer robust and stable operation without the need for constant realignment. The low cost and stability of fiber-based femtosecond lasers mean that even beginner research labs can have a femtosecond pulse source without the need for expensive or complicated equipment. This brings ultrafast research into the realm of undergraduate and other educational environments. With pulse lengths of 100 fs at 1550 nm fiber femtosecond lasers can also be used as seed sources for femtosecond fiber amplifiers. The 1550 nm wavelength of Er-doped fiber lasers also makes them an attractive tool for ultrahigh-speed optical communications applications.
The second harmonic version EFOA-SH with wavelength 780 nm is also available.
EFO-80/10 | EFO-T/50 | EFOA-T/P | |
Pulse width (fixed), fs | <80* | 250-5000** | 100-250** |
Wavelength (fixed), nm | 1560±10 | ||
Average output power, mW | 10* | 50 | 100-250** |
Repetition rate (fixed), MHz | 70 | 25-80*** | 70 (40-80 on request) |
Polarization, linear | vertical or horizontal*** | horizontal | |
Spatial mode | TEMoo | ||
Fiber output | available upon request | ||
RF SYNC out | SMA connector (200-300 mV@50 ohm load) | ||
Mode lock status | SMA connector (3.5/0 V) and LED | ||
Service optical output | FC/APC (~1 mW) | ||
Laser head dimensions, mm Power supply unit dimensions, mm | 180x210x50(70) 230x200x85 | 180x210x70(90) 230x200x130 |
* - <100 fs @ 20 mW or <50 fs @ 10 mW specs upon request.
** - pulse duration (T) and output power (P for EFOA) should be selected with your request. For the EFOA model, the (lowest available pulse duration)/(highest avaialbe average power) relation is equal to 1 (i.e. at 100 fs the highest possible power is 100 mW, at 250 fs - 250 mW etc).
*** - please specify with your request.
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