Quartz mirrors

Quartz mirrors

For all UV-IR applications

Synthetic quartz optics

Quartz offers uniform transmission and low absorption across the entire visible wavelength range, making it a key element in the manufacture of sophisticated technical optics. Its excellent optical quality and virtually colourless appearance enable the production of precision optics that can be used in a variety of applications, including sophisticated technical optics, optical windows and substrates for mirror and filter coatings. The high homogeneity and low content of bubbles and inclusions contribute to the high quality of the end products, while the good light transmission in the visible and near infrared spectrum maximises the efficiency of the optical systems.

Quartz is an important component in the manufacture of sophisticated technical optics as it offers uniform transmission and low absorption across the entire visible wavelength range. Due to its excellent optical quality and virtually colourless appearance, quartz is ideal for the manufacture of precision optics that can be used in a wide range of applications.

The high homogeneity and low content of bubbles and inclusions in quartz contribute to the high quality of the end products. This is particularly important for optical systems that require the highest precision. Quartz is often used for the production of optical windows, substrates for mirror and filter coatings and sophisticated technical optics.

Applications of quartz optics

Due to its unique optical properties, quartz is an extremely versatile material for the production of precision optics in various applications. Due to its high transparency in the UV range, quartz is particularly suitable for applications in ultraviolet optics, such as UV lithography or UV spectroscopy. In addition, quartz has a very low thermal expansion, which makes it ideal for applications with extreme temperature fluctuations, such as in astronomy.

The high purity and homogeneity of quartz enable excellent light transmission, making it a favoured material for high-precision optical components such as lenses, prisms and filters. The low dispersion of quartz also ensures minimal chromatic aberration, which is crucial in optics to produce a clear and sharp image.

Quartz is therefore highly valued as a material for the manufacture of precision optics in applications that place the highest demands on optical quality. From microscopy and laser technology to satellite communication, quartz plays a crucial role in technical optics.

Quartz optics for ultraviolet
Quartz mirrors for laser technology

Quartz mirrors in technical optics

Mirrors made of quartz play an important role in optical measurement technology due to their special optical properties. Quartz is a transparent material with a high degree of purity and homogeneity, which makes it ideal for use as a mirror in optical systems.

  • Laser processing: cutting, welding, ablation, drilling
  • Laser material processing: marking, engraving, structuring
  • Measurement technology: interferometry, deflectometry
  • Optical systems: lithography, microscopy, astronomy
  • Medical technology: laser surgery, ophthalmology
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