Solid-State & Stabilized CW Lasers

Stable Light. Repeatable Performance.

Many optical applications depend not only on laser power, but on how reliably that performance can be maintained over time.

Solid-state and stabilized continuous-wave lasers provide precise, continuous optical output for scientific, analytical, industrial and OEM applications where wavelength, power, beam quality and long-term stability matter.

What Does Your Application Require?

Stability Starts with the Right Laser

The best CW laser is not necessarily the one with the highest output power. The right source depends on which optical parameters determine the performance of your application.

Wavelength

Select the wavelength that matches the material, measurement, fluorophore or optical process.

Optical Power

Match the output to the application without overspecifying the system.

Beam Characteristics

Consider beam quality and whether single-mode or multi-mode operation is required.

Stability

Determine whether power, wavelength or other parameters need active stabilization.

Integration

Consider size, environmental conditions, interfaces and free-space or fiber delivery early in the system design.

When Stability Matters

Stabilized laser systems can actively control parameters such as optical power, wavelength and temperature to maintain repeatable performance.

For spectroscopy, metrology and other precision measurements, long-term stability can be more important than maximum headline specifications.

Typical Applications

Spectroscopy & Analytics

Raman and absorption spectroscopy, fluorescence excitation and optical sensing.

Imaging & Microscopy

Fluorescence microscopy, biomedical imaging and confocal microscopy.

Industrial & OEM

Optical alignment, semiconductor inspection, process monitoring and machine integration.

Research & Development

Photonics research, optical characterization, quantum technologies and atomic and molecular physics.

Why Laser 2000

Two business professionals discussing and exchanging documents outdoors in Piura, Peru.
We help you select and stabilize CW lasers based on wavelength, power, beam quality and stability requirements—from standard sources to OEM-integrated solutions.

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Frequently Asked Questions

Do I need active wavelength or power stabilization?

Applications such as spectroscopy and metrology often benefit from active stabilization to maintain repeatable performance over time. Our experts help evaluate whether your application requires it.

Single-mode operation provides a well-defined beam profile suited to precision applications, while multi-mode operation can deliver higher power where beam quality is less critical. The right choice depends on your application.

Yes. Size, environmental conditions, interfaces and free-space or fiber delivery can all be considered early in the system design to support OEM integration.

Your Photonics Expert

Looking for something specific?

We’re here to create a custom solution for you

Looking for a Stable Laser Source?

Tell us about your wavelength, power, stability and integration requirements. Our Photonics Advisors can help identify the right CW laser technology for your application.

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