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MONO Highlights Femtosecond Laser Solutions at USQS2026, Empowering Ultrafast Science and Quantum Sensing

2026-01-31
Sanya, Hainan – January 2026 – The 3rd International Conference on Ultrafast Science and Quantum Sensing (USQS2026) was recently held in Sanya, Hainan. At this prestigious gathering of the world’s leading minds in optics and physics, MONO (Shenzhen Mono Technology Co., Ltd.) showcased its latest innovations at Booth 14, demonstrating how femtosecond laser technology breaks the physical boundaries of material processing to empower high-end applications.

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In the fields of quantum sensing and ultrafast science, the precision of a device often dictates the success of an experiment. Traditional laser or mechanical processing inevitably introduces thermal effects, leading to material carbonization, micro-cracks, or recast layers—defects that are intolerable for quantum instruments requiring atomic-level precision. MONO has deeply specialized in femtosecond laser technology, leveraging its "cold processing" potential. Through self-developed light-field control algorithms and industry-leading process control, MONO continues to push the limits of micro-nano manufacturing into new dimensions.

During the exhibition, MONO highlighted three core application capabilities of femtosecond lasers in micro-device manufacturing:

Taper-Free Micro-Drilling

Specifically designed for fluid control micropores at the heart of sensors, MONO has achieved taper-free processing with a high aspect ratio of 10:1. The diameter precision is maintained at ±2μm with burr-free, smooth walls. For high-density micropore processing, the technology can produce uniform arrays of 300,000 holes per square centimeter on cell filtration membranes (7μm diameter), ensuring the stability of hydrodynamic performance.

Carbonization-Free Precision Cutting

When dealing with materials highly susceptible to thermal damage, traditional cutting methods often cause oxidation or delamination at electrode edges. MONO’s femtosecond laser performs "cold cutting" on metal, ceramic, and polymer composite electrodes. The resulting edges are burr-free, fully preserving the material’s electrical conductivity and corrosion resistance.

 Micro-Nano Surface Etching

MONO demonstrated the ability to etch complex circuits, flow channels, and micro-textures onto both flat and curved device surfaces. With a surface roughness achieving Ra 0.2μm, these solutions help micro-devices realize specialized functional requirements.
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As a specialist in femtosecond laser technology, MONO is a trusted partner for national-level scientific research projects and leading enterprises in "high-barrier" sectors, including advanced semiconductor packaging, aerospace, and medical implants.

MONO remains committed to being more than just an equipment manufacturer; we are explorers of extreme manufacturing processes, dedicated to unlocking the infinite potential of femtosecond lasers alongside experts in scientific research and precision manufacturing.