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    Description:  
  Littrow Monolithic Tunable External Cavity Laser, 370nm .. 1770nm, up to 300mW, patented technology, monolithic cavity design, hands-off operation, narrow linewidth, up to 30GHz mode-hop free tuning, free space and fiber coupled versions. Check our ar-coated diode stock list for availability.
 
  
	
		
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			| Cavity Layout (Grating Output) | 
			
			 Cavity Layout (Chip Output) 
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Wavelength
High optical power
Excellent tuning behavior
	- use of in-house anti-reflection coated laser diodes 
 
	- fine tuning via piezo actuator with a resolution better than 10MHz
 
	- large mode-hop free tuning range of up to 30GHz and more
 
	- beam steering compensation 
 
Narrow linewidth
Temperature Stability
Excellent frequency locking performance
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high resonance free piezo modulation
	 
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high frequency laser current modulation
	 
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low acoustic susceptibility
	 
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excellent long term locking stability
	 
 High flexibility
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free beam and fiber coupled versions available
	 
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constant current and constant power operation modes (optional)
	 
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excellent laser performance and frequency stability
	 
Plug & Play configuration
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modular laser system design
	 
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automated piezo tuning with power read-out
	 
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remote control via GPIB, RS232 and USB
	 
 Applications
	- Spectroscopy and optical process control
 
	- Optical cooling and trapping
 
	- Raman spectroscopy
 
	- Seed laser for THz generation
 
	- Laser and OPO seeding
 
	- Non-linear optical processes
 
Optional Accessories
	- Optical Isolator
 
	- Single Mode PM Optical Fiber
 
	- High-Frequency Current Modulation
 
	- Contact us for more Options
 
Innovative Product
	- US Patent 6,297,066
 
	- US Patent 6,869,483
 
 
|   | More Details | Wavelength |  Power |  Tuning (total) |  Tuning (fine) |    |   | 
|---|
|   | LYNX-S3-0405-030 | 402-406nm |  30mW |  >3nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-0670-020 | 665-675nm |  20mW |  >10nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-0705-030 | 695-708nm |  30mW |  >10nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-0730-020 | 725-735nm |  20mW |  >10nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-0770-100 | 755-775nm |  100mW |  >20nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-0780-120 | 767-792nm |  120mW |  >20nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-0785-120 | 775-795nm |  120mW |  >20nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-0830-100 | 805-840nm |  100mW |  >20nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-0850-100 | 830-870nm |  100mW |  >20nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-0920-100 | 890-940nm |  100mW |  >20nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-0960-100 | 920-985nm |  150mW |  >50nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-1060-100 | 1030-1075nm |  100mW |  >40nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-1220-100 | 1170-1270nm |  100mW |  >100nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-1340-030 | 1290-1380nm |  30mW |  >90nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-1430-100 | 1390-1430nm |  100mW |  >100nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-1550-050 | 1480-1580nm |  50mW |  >100nm |  >30GHz |    |   |   |   | 
|   |   |  | 
|   | LYNX-S3-1580-050 | 1560-1620nm |  50mW |  >100nm |  >30GHz |    |   |   |   | 
|   | LYNX-S3-1650-030 | 1600-1800nm |  30mW |  >200nm |  >30GHz |    |   |   |   | 
 
Publications
- Antireflection-coated blue GaN laser diodes in an external cavity and Doppler-free indium absorption spectroscopyL. Hildebrandt, R. Knispel, S. Stry, J. R. Sacher, F. Schael, Applied Optics 42, 2110-2118 (April 2003)
 
- Diodenlaser mit externem Resonator und entspiegelter blauer LaserdiodeL. Hildebrandt, R. Knispel, J. R. Sacher, Photonik, 2-4 (2002)
 
- Intensity instabilities of semiconductor lasers under current modulation, external light injection, and delayed feedbackJ. Sacher, D. Baums, P. Panknin, W. Elsässer, E. O. Göbel, Phys. Rev. A45, 1893-1905 (1992)
 
- Intermittency in the Coherence Collapse of a Semiconductor Laser with External FeedbackJ. Sacher, W. Elsässer, E.O. Göbel, Phys. Rev. Lett. 63, 2224-2227 (1989)
 
- Robust external cavity diode laser (ECDL) and their application in water vapor and saturated-absorption rubidium spectroscopy (LACEA 2000)L. Hildebrandt, J. Sacher, R. Knispel, F. Schael, LACEA Conference, Santa Fe, NM (2000)
 
- Robust external cavity diode lasers with implemented antirefl ection coated blue laser diodes and their performance in atom absorption spectroscopy (LACEA 2002)Lars Hildebrandt, Richard Knispel, Joachim R. Sacher, LACEA (2002)