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FABRY-PEROT ETALONS

FABRY-PEROT ETALONS

Product catalog summary
Introduction
Fabry-Perot etalons consist of two parallel partially reflecting mirrors that create interference, acting as a filter to transmit resonance peaks in the frequency domain. The distance between the mirrors determines the spacing of these peaks, while the reflectivity of the mirrors affects the width of the peaks. High-quality polishing and excellent parallelism are crucial for achieving high finesse and transmission characteristics.

Types of Etalons
  • Air Gap Etalons: These use a frame to support mirrors at both ends of the air gap, with Zerodur® as the spacer material for thermal and mechanical stability. They are customizable, with mirror distance adjusted by changing holder length. A small wedge angle can be polished on the mirror glass plate to avoid back-reflection.
  • Solid Etalons: Made from a piece of glass with exact thickness, coated on both sides. They are sensitive to temperature variations, allowing tuning within a controlled environment.

Applications
Fabry-Perot etalons are used in telecom systems as narrow band filters, laser cavity locks, and frequency reference combs according to the ITU grid. They are also applied in astronomy, optical transport, and optical sensing.

Specifications
  • Operation Wavelength (λ0): 1550 nm
  • Dimensions: Height: 17 mm, Width: 14 mm, Length: 80 mm
  • Free Spectral Range (FSR): 7.5 GHz - 15 GHz - 50 GHz
  • Finesse: 4 - 10
  • Cavity Type: A: air space with Zerodur spacer, B: solid fused silica etalon
  • Insertion Loss (I.L.): < 2.0 dB
  • Operating Temperature: 15 to 40°C
  • Storage Temperature: -20 to 85°C

Note: All specifications are customizable upon request.

Contact Information
For more details, visit www.doriclenses.com or call 418.877.5600.
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Catalog excerpts

FABRY-PEROT ETALONS-1

fabry-perot etalons Fabry-Perot etalons are made up of two parallel partially reflecting mirrors facing each other. The interference created by the mirrors acts as a filter which transmit only a series of resonnance peaks evenly distanced in frequency domain. The distance between mirrors defines the distance between peaks in frequency domain, while mirrors reflectivity define peaks width. High quality polishing (λ/20) and excellent parallelism (< 1 arcsec) ensure high finesse and transmission characteristics. To produce air gap etalon, one needs to use a frame to support the mirrors at both ends of the air gap. In order to achieve high thermal and mechanical stability, we use a glass with low thermal expansion coefficient, i.e., Zerodur® as spacer material. Air spaced etalons are easier to customize than solid glass etalons. The mirrors from the same coating batch can be used for any air-gap, while the distance between mirrors is adjusted by changing holder length. To avoid back-reflection, the other side of the mirror glass plate can be polished with a small wedge angle. Solid etalons are made from a piece of glass of exact thickness which is coated on both sides with partially reflecting coating. Their sensivity to temperature variation can be used to tune the etalon within an environment with controlled temperature. Fabry-Perot etalons are in common use in telecom systems as narrow band filters to lock a laser cavity on a fixed frequency or as a frequency reference comb according to ITU grid. Doric Lenses Inc. etalons are also used in diverses applications such as astromony, optical transport, optical sensing and others. Operation Wavelength Free Spectral Range A : air space with Zerodur spacer B : solid fused silica etalon Cavity type Insertion Loss Operating Temperature Storage Temperature All specifications are customized upon request p. 1/1 FABRY-PEROT ETALON (12/07) www.doriclenses.com 418.877.5600

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