
Nonplanner Ring Oscillator Laser Crucial for Gravitational Wave Detection and Quantum Mechanics Experiments
Contact Person : Phoebe Yu
Phone Number : 8618620854039
Whatsapp : +8618620854039
Minimum Order Quantity : | 1 | Price : | Negotiable |
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Packaging Details : | International Shipping Package | Delivery Time : | 90-120 Working days |
Payment Terms : | T/T | Supply Ability : | 20PCS / 90-120Working days |
Place of Origin: | CHINA | Brand Name: | JINSP |
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Certification: | CE ISO9001 | Model Number: | LN1000 LN1200 |
Document: | Product Brochure PDF |
Detail Information |
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Wave Length: | 1064nm 532nm | Power Stability: | <1.5% |
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Beam Quality: | M2<1.2 M2<1.3 | Beam Divergence: | 0.2±0.05(mrad) |
Output Beam Shape: | Circular | ||
Highlight: | Coherent Optical Communications Ring Oscillator Laser,Nonplanar Ring Oscillator Laser,Optical Signals Nonplanner Ring Oscillator Laser |
Product Description
Attribute | Value |
---|---|
Wave length | 1064nm 532nm |
Power Stability | <1.5% |
Beam quality | M2<1.2 M2<1.3 |
Beam Divergence | 0.2±0.05(mrad) |
Output Beam Shape | Circular |
The LN series of narrow linewidth lasers delivers exceptional performance with high spectral purity, long coherence length, and minimal phase noise. These precision-engineered lasers provide stable, accurate light output for demanding applications across multiple scientific and industrial fields.
In gravitational wave detection, these lasers serve as critical components, providing the stable coherent light source needed to detect minute spacetime distortions. Their spectral purity ensures noise-free measurements, enhancing detection accuracy.
For cold atom physics research, the LN series offers ideal light sources for atomic manipulation at ultra-low temperatures. The long coherence length and low phase noise enable precise control of atomic states, facilitating quantum mechanics experiments and precision measurements.
In coherent optical communications, these lasers maintain signal clarity over long distances, reducing error rates and improving data transmission efficiency - crucial for modern high-speed telecommunications.
Product code | LN1000 | LN1200 |
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Wavelength(nm) | 1064 | 532 (Including iodine stabilizing system) |
Average Power (W) | 2 | 0.01 (Maximum to 0.05, Customization required) |
Power Stability | < 0.1% | < 1% |
Beam Divergence (mrad) | 1.2 @ 3mm Beam Waist | 2.3 @ 3mm Beam Waist |
Beam Quality | M2 < 1.2 | M2 < 1.3 |
Linewidth (kHz) | 1 | 3 |
Polarization | Linear | |
Power supply voltage (V) | 220 | |
Warm-up Time (min) | ~ 5 | ~ 10 |
Storage Temperature (°C) | -10 °C ~ 50°C |
The measurement accuracy of high-speed ultra-precision laser interferometers depends on both the stability of the probing laser's wavelength and the coherence coefficient of the interferometer.
Our 1064nm narrow linewidth light sources deliver high-power output that enhances the interferometer's coherence coefficient, significantly improving measurement accuracy. The exceptional wavelength stability of these sources enables precision measurements surpassing atomic scale accuracy within 300mm ranges.
Scientific Research (Research Institutes and Universities):
Core Components for Instrument Manufacturers:
Industrial Manufacturing Applications:
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