Description:
Master Oscillator Power Amplifier (MOPA) Laser System, 633nm .. 1180nm, up to 3000mW, patented technology, modular cavity design, easy laser diode exchange, narrow linewidth, up to 30GHz mode-hop free tuning, free space and fiber coupled versions. Check our ar-coated diode stock list for availability.
Technical Details
Wavelength
High optical power
- output power up to 3000mW
- excellent quantum efficiency
- high fiber coupling efficiency
Excellent tuning behavior
- use of in-house anti-reflection coated laser diode
- fine tuning via piezo actuator with a resolution better than 10MHz
- manual coarse tuning up to 30nm at 780nm or 830nm
- large mode-hop free tuning range of up to 100GHz and more
Narrow linewidth
- linewidth < 300kHz
- excellent side mode suppression > 50dB
Excellent frequency locking performance
- high resonance free piezo modulation
- high frequency laser current modulation
- excellent temperature stability
- low acoustic susceptibility
- excellent locking stability
High flexibility
- free beam and fiber coupled versions available
- motorized master Littman / Metcalf laser with automated wavelength scans via remote software
- Littrow type of master laser (optional)
- constant current and constant power operation modes (optional)
- excellent laser performance and frequency stability
Plug & Play configuration
- modular laser system design
- automated piezo tuning with power read-out
- remote control via GPIB, RS232 and USB
Application
- Spectroscopy and optical process control
- Seed laser for THz generation
- Optical cooling and trapping, BEC
- Absolute distance interferometry
- Laser and OPO seeding
- Non-linear optical processes
Optional Accessories
- Upgrade from 35dB to 60dB Optical Isolator
- Single Mode PM Optical Fiber
- High-Frequency Current Modulation
- Motorized Wavelength Scans
- Contact us for more Options
Innovative Product
- US Patent 5,867,512
- US Patent 6,297,066
- US Patent 6,869,483
Specs & Stock List
More Details |
Wavelength |
Power |
Tuning (total) |
tuning (fine) |
TEC-420-0650-0250 |
648-656nm |
250mW |
>8nm |
>30GHz |
TEC-420-0670-0500 |
662-678nm |
500mW |
>8nm |
>30GHz |
TEC-420-0730-0500 |
728-736nm |
500mW |
>8nm |
>30GHz |
TEC-420-0770-1500 |
752-772nm |
1500mW |
>15nm |
>30GHz |
TEC-420-0780-1000 |
770-785nm |
1000mW |
>15nm |
>30GHz |
TEC-420-0780-2500 |
770-785nm |
2500mW |
>15nm |
>30GHz |
TEC-420-0785-1500 |
770-795nm |
1500mW |
>20nm |
>30GHz |
TEC-420-0810-1500 |
790-815nm |
1500mW |
>15nm |
>30GHz |
TEC-420-0830-1000 |
820-840nm |
1000mW |
>15nm |
>30GHz |
TEC-420-0850-2000 |
840-860nm |
2000mW |
>15nm |
>30GHz |
TEC-420-0870-1500 |
855-880nm |
1500mW |
>15nm |
>30GHz |
TEC-420-0895-1500 |
880-910nm |
1500mW |
>15nm |
>30GHz |
TEC-420-0915-1500 |
890-940nm |
1500mW |
>20nm |
>30GHz |
TEC-420-0950-1500 |
940-960nm |
1500mW |
>15nm |
>30GHz |
TEC-420-0960-2000 |
950-970nm |
2000mW |
>15nm |
>30GHz |
TEC-420-0976-2000 |
970-985nm |
2000mW |
>15nm |
>30GHz |
TEC-420-1030-2000 |
1000-1040nm |
2000mW |
>15nm |
>30GHz |
TEC-420-1060-0500 |
1050-1070nm |
500mW |
>15nm |
>30GHz |
TEC-420-1060-1500 |
1050-1083nm |
1500mW |
>20nm |
>30GHz |
TEC-420-1080-0500 |
1070-1120nm |
500mW |
>20nm |
>30GHz |
Applications
• Caesium Spectroscopy - D1 Line
• Caesium Spectroscopy - D2 Line
• Electromagnetic Induced Transparancy (EIT)
• Rubidium Spectroscopy - D1 Line
• Rubidium Spectroscopy - D2 Line
Support & Download
Publications
- High-frequency tuning of high-powered DFB MOPA system with diffraction limited power up to 1.5W (PW2006)Joachim Sacher, Richard Knispel, Sandra Stry, Photonics West 2006
- Use of tapered amplifier diode laser for biological-friendly high-resolution optical trappingWei Cheng, Ximiao Hou, and Fangmao Ye, Opt. Lett. 35, 2988 (2010)
- Widely Tunable diffraction limited 1000mW external cavity diode laser in Littman / Metcalf configuration for cavity ring-down spectroscopyS. Stry, S. Thelen, J. Sacher, D. Halmer, P. Hering, M. Mürtz, Applied Physics B85, 365-374 (2006)
- Widely tunable ultra stable 1W two color THz laser sourceSandra Stry and Joachim R. Sacher, Photonics West 2007