Ultra-narrow band optical filter with high optical stability and preparation method thereof
An ultra-narrowband filter and ultra-narrowband filter technology, used in optoelectronic and laser systems and instruments as signal filters, optical fields, and can solve problems such as filter wavelength drift
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Embodiment 1
[0066] As Embodiment 1, the present invention expects to solve the problem of wavelength drift caused by changes in the relative humidity of the environment. Changes in relative humidity will induce the film to absorb water and cause changes in the refractive index n of the film. Therefore, to completely eliminate the wavelength drift of the filter, the aggregation density of the film must be increased to a high enough level. The invention adopts the ion-assisted deposition technology to increase the accumulation density of the film to above 0.999, so as to ensure that the wavelength drift of the optical filter is less than 0.1nm. First of all, the present invention normalizes many complex ion source parameters into two parameters of ion energy and ion current density, wherein the ion energy is directly obtained from the ion source beam voltage, and the ion current density is obtained by a newly installed ion source at the same position as the substrate. The current detection ...
Embodiment 2
[0069] As the second embodiment, the present invention expects to alleviate the problem of wavelength drift caused by ambient temperature. The change of ambient temperature will not only cause the change of the geometric thickness d of the film, but also the change of the refractive index n of the film, thus causing the wavelength drift of the filter. Although the wavelength drift induced by the ambient temperature of the filter is smaller than the drift caused by the aggregation density, there is no good solution so far. For this reason, the present invention first proposes to use FEP organic plastic with a very high coefficient of thermal expansion as the substrate of the ultra-narrow band filter to solve the problem. The principle is: when the ambient temperature rises, both the linear expansion coefficient and the temperature coefficient of the refractive index will cause the center wavelength of the filter to drift to the long-wave direction, but because the thermal expan...
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