Why us?

Why us?

Solutions Tailored to Your Problems

Tired of settling for off-the-shelf lasers that only partially satisfy your optical needs?

  • We engineer custom longwave and midwave infrared laser solutions for your specific needs.
  • We work with customers to understand their requirements and strive to be candid about the solution pathways.

About Us

Why us?

Tested-Performance

Our team of designers, engineers and physicists work together to drive innovation and craft industry-leading photonic technologies that fit your needs.

  • Wavelength selection from 5.2 - 5.6µm or 9 - 11.3µm with average power stability less than ±1%.
  • Customize the pulse length, beam fluence, or polarization while maintaining the highest standard for mode quality.

About Us

Why us?

Customer Care

We strive to provide our customers with the best experience possible.

  • Call us during business hours and talk to a real person every time.
  • Email us for in-depth, expert responses from laser engineers.
  • Our service engineers operate with transparency, and keep you informed on the status of your repairs.

About Us

Why us?

Global Presence

We are an international company that understands not all problems are technological but often regional.

  • International sales support is available to understand your needs.
  • Problem-solving and support is tailored to your specific region.

About Us

Technologies Descriptions

Power Stability

Whether it's precision heating or increasing the signal-to-noise ratio, stability is a critical factor in all high-performance systems.

Wavelength Selection

Light is only as effective as the absorption coefficient of your target material. Which is why we offer the ability to exactly match these resonant frequencies via wavelength selection.

Mode of Operation

Each unique application calls for a specific implementation of how and when the light is delivered to target. These technologies provide unparalleled control over these factors.

Latest News & Research

Access Laser Interview with the University of Washington School of Dentistry on their all-tissue laser research

In this video interview Access Laser sits down with co-principal investigators Professor John A. Sorensen DMD, PhD and Professor Hai Zhang DMD, PhD of the Department of Restorative Dentistry’s Biomimetics, Biomaterials, Biophotonics, Biomechanics & Technology (B4T) Laboratory to discuss their research utilizing an Access Laser 9.3µm DL500 all-tissue dental laser. Their work is to validate […]

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CO2 Laser Heated Silica Manipulation

The high absorption of infrared light in silica is an established trait that has seen longwave infrared lasers operating at 10.6µm and 9.3µm implemented for a variety of applications over the years. In this article, we will look at three such use cases: laser damage growth mitigation, manufacturing of freeform micro-optics, and fiber optic processing. […]

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Infrared Atomic Force Microscopy & Scattering Scanning Near-field Optical Microscopy

CO2 lasers and other mid-infrared light sources are proven tools for material inspection via spectroscopic techniques, recently atomic force microscopy (AFM) and scattering scanning nearfield optical microscopy (s-SNOM) have gained traction due to their complimentary setups. These techniques can provide insight to a material’s chemical composition and optical properties while providing imaging with a spatial […]

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Laser Focus World – The Future of Gas Lasers

Access Laser and Dr. Yong Zhang were the focus of the November 2016 cover story entitled, “CO2 lasers—progressing from a varied past to an application-specific future”. This issue features an in-depth discussion of CO₂ laser applications.

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Why CO2 Lasers Remain Ahead of Quantum Cascade Lasers

Access Laser was started when Dr. Zhang saw CO2 laser companies entrenching further towards the dollar-per-watt paradigm and in the process ignoring the scientific and research markets. This led to the focus and core customer base generated during the first fifteen years of the company’s existence. By providing high quality and robust light sources for […]

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