NA Converter - na of lens
I.e., if linearly polarized light of various wavelengths enters the quarter-wave plate, it will emerge from it with various degrees of elliptical polarization (essentially a mix of linear+circular polarizations) from it, dependent on its wavelength.
A circular polarizer is often a combined $\lambda$/4- retardader, and a linear polarizer having its transmision axis at 45 deg with the optical axis of the retardader. A linear polarizer cannot transmit light having the electric field vibrating perpendicular to its transmision axis.
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Apparently, this piece of equipment gets rid of complications a simple linear polarizer causes with (partially) reflective parts inside the camera.
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Linear vs circularpolarizer reddit
Figure 5: A CS-mount lens is not directly compatible with a C-mount camera, since the light focuses before the camera's sensor. Adapters are not useful, since the solution would require shrinking the flange focal distance of the camera (blue arrow).
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The C-mount and CS-mount camera system standards both include 1.000"-32 threads, but the two mount types have different flange focal distances (FFD, also known as flange focal depth, flange focal length, register, flange back distance, and flange-to-film distance). The FFD is 17.526 mm for the C-mount and 12.526 mm for the CS-mount (Figures 1 and 2, respectively).
Linear vs circular polarizationreddit
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With an adapter, a C-mount lens can be used with a CS-mount camera (Figures 3 and 4). The adapter increases the separation between the lens and the camera's sensor by 5.0 mm, to ensure the lens' focal plane aligns with the camera's sensor plane.
s-polarizationvsppolarization
I have a polarizer which has CIRCULAR PL written on it. This suggests it is a circular polarizer even though I am supposed to have a linear one.
It is critical to check the lens and camera parameters to determine whether the components are compatible, an adapter is required, or the components cannot be made compatible.
You can learn more about polarization reading Hecht's textbook "Optics, 5th ed" (Pearson education, 2016, or previous editions), or a more especiliazed texts such as that from Goldstein "Polarized ligh" (Marcel Dekker, 2003), as well as the more recent from Jose Jorge Gil and Ravizgor OssiKovski "Polarized light and the Mueller matrix approach" (CRC press, 2016)
In other words, if you ordered a photographic polarizer, it will be most likely either be a linear polarizer, or a linear polarizer with a quarter-wave plate. Both of them should dim and brighten an LCD screen when rotated and used in the designed direction, but you can tell between the two when you flip it. Then the simple linear polarizer will work exactly the same, but the circular one will work different; it should show less dimming/brightening when rotated and possibly some color variations to the light when flipped.
Mixing and MatchingC-mount and CS-mount components have identical threads, but lenses and cameras of different mount types should not be directly attached to one another. If this is done, the lens' focal plane will not coincide with the camera's sensor plane due to the difference in FFD, and the image will be blurry.
In contrast, the shorter FFD of CS-mount lenses makes them incompatible for use with C-mount cameras (Figure 5). The lens and camera housings prevent the lens from mounting close enough to the camera sensor to provide an in-focus image, and no adapter can bring the lens closer.
Circular vs linearpolarizer for mirrorless camera
Measuring Flange Focal DistanceMeasurements of flange focal distance are given for both lenses and cameras. In the case of lenses, the FFD is measured from the lens' flange surface (Figures 1 and 2) to its focal plane. The flange surface follows the lens' planar back face and intersects the base of the external 1.000"-32 threads. In cameras, the FFD is measured from the camera's front face to the sensor plane. When the lens is mounted on the camera without an adapter, the flange surfaces on the camera front face and lens back face are brought into contact.
If you use the polarizer in the way it was designed, it doesn't really matter, because your eyes are unable to detect polarization anyways. However, it changes if you flip it around. Then the light from a linearly-polarized source such as an LCD display gets first shifted in a color-dependent way, and then, based on this shift, filtered out by the linear polarizer. As a result, the flipped photographic "circular polarizer" applied to linearly polarized light will filter out some colors more and some colors less.
Linear polarization
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Figure 1: C-mount lenses and cameras have the same flange focal distance (FFD), 17.526 mm. This ensures light through the lens focuses on the camera's sensor. Both components have 1.000"-32 threads, sometimes referred to as "C-mount threads".
Linearpolarizervs circularpolarizer photography
There is a number of ways you can find out whether you are dealing with a polarizer of a given kind, this is because 1) light reflected off surfaces is partially linearly polarized, 2) polarizers of a certain kind polarize your light and you can use that to compare with your polarizer, and 3) LCD screens emit linearly polarized light. As a result, you can do the following to tell which polarizer you have
Nevertheless, the second step, the quarter-wave plate, works exactly as described above only for one fixed wavelength of light $\lambda_0$ (this could be e.g. the wave-length of orange light). For other wavelengths (other colors of light), it introduces a slightly different phase shift.
Linear polarizationexample
EDIT: The meaning of the word "circular polarizer" as I use it in the first part of the answer above is an optical element which filters out the light of a given circular polarization and leaves only the complementary one. (In practice this could be for instance achieved by a combination of a quarter-wave plate, a linear polarizer, and a 3/4-wave plate.)
Figure 3: A C-mount lens and a CS-mount camera are not directly compatible, since their flange focal distances, indicated by the blue and yellow arrows, respectively, are different. This arrangement will result in blurry images, since the light will not focus on the camera's sensor.
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Figure 2: CS-mount lenses and cameras have the same flange focal distance (FFD), 12.526 mm. This ensures light through the lens focuses on the camera's sensor. Their 1.000"-32 threads are identical to threads on C-mount components, sometimes referred to as "C-mount threads."
1.000"-32 ThreadsImperial threads are properly described by their diameter and the number of threads per inch (TPI). In the case of both these mounts, the thread diameter is 1.000" and the TPI is 32. Due to the prevalence of C-mount devices, the 1.000"-32 thread is sometimes referred to as a "C-mount thread." Using this term can cause confusion, since CS-mount devices have the same threads.
On one hand, You can distinguish between the two as the linear polarizer cancels light reflected in a surface at the Brewster angle of incidence, i.e, you cannot see the reflexion. The transmission axis should be in the vertical direction. On the other hand, the circular polarizer differentiates circular polarized light that rotates counterclockwise or clockwise direction. Circular polarizers are often used as antireflection coatings in displays screens, as the light impinging in the display is circularly polarized rotating in one direction when previously transmitted by the circular polarizer, but after reflection then rotates in the opposite direction, and the circular polarizer cancels transmission to the observer.
Linear vs circular polarizationcar
Figure 4: An adapter with the proper thickness moves the C-mount lens away from the CS-mount camera's sensor by an optimal amount, which is indicated by the length of the purple arrow. This allows the lens to focus light on the camera's sensor, despite the difference in FFD.
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Since their flange focal distances are different, the C-mount and CS-mount components are not directly interchangeable. However, with an adapter, it is possible to use a C-mount lens with a CS-mount camera.
However, I have just learned that in photography, the word "circular polarizer" is actually used for a linear polarizer with a quarter wave-plate. In other words, "circular polarizer" in photographic equipment means an optical element which ideally does the following: