Allicdata Part #: | BB3-CR-ND |
Manufacturer Part#: |
BB3-CR |
Price: | $ 4.15 |
Product Category: | Optoelectronics |
Manufacturer: | Visual Communications Company - VCC |
Short Description: | LEXAN LENS, 100% 10062123 |
More Detail: | |
DataSheet: | BB3-CR Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
25 +: | $ 3.77068 |
Series: | * |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Optics lenses have been used in applications ranging from microscopy to astronomy for centuries. Most recently, the incorporation of complex optical elements such as aspheric lenses, diffractive optics, and free-form surfaces has driven the field of optics to new heights. One of the most exciting developments in optics in recent decades is the introduction and use of birefringent cubic crystals, also known as BB3-CRs.
BB3-CRs are particular types of optical elements that employ the principle of birefringence, an optical effect in which light waves passing through a crystal or other optical element are split into two refracted beams. This is due to the index of refraction (IOR) of the optical material having two different values for the polarization directions of the light. By exploiting the birefringent properties of a birefringent cubic (BB3) crystal, the polarization of optical beams can be modified in various ways.
BB3-CRs offer a number of advantages over other types of optical elements. The most obvious advantage is a greater degree of control over polarization, which makes them ideal for polarization sensitive applications. As BB3-CRs are formed in a cubic shape, they also offer a greater degree of flexibility in terms of imaging geometry. Additionally, they have a much larger aperture than other types of lenses or optical elements.
In terms of applications, BB3-CRs have been used in a wide range of fields, including photography, microscopy, spectroscopy, laser technology, microscopy, and astronomy. In most applications, BB3-CRs are used to modify the polarization of optical beams or to increase the efficiency of the light conversion process. In the field of photography, for example, BB3-CRs are used to increase the contrast between certain colors in an image. In the field of spectroscopy, BB3-CRs can be used to increase the resolution of spectrometers.
The working principle behind BB3-CRs is relatively straightforward and easy to understand. When a beam of light strikes a birefringent cubic crystal, the direction and intensity of the refracted beam depend on the angle and polarization of the incoming light. As the polarization of the light changes, so too does the intensity of the refracted beam. When the polarization is parallel to one of the crystal faces, no refracted beam is formed and no light is transmitted. By exploiting the polarization-dependent properties of birefringent cubic crystals, it is possible to precisely modify and control the polarization of optical beams, making them ideal for polarization sensitive applications.
BB3-CRs are an important part of the rapidly developing field of optics and have a wide range of applications. Thanks to their flexibility and high performance, they have become an integral part of many different imaging and optical systems across a variety of different fields. By exploiting the unique properties of BB3-CRs, it is possible to greatly increase the efficiency and accuracy of optical manipulation and measurement processes.
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