Tandem polarization beam splitters for real-time polarization difference sensing
A tandem beam splitter for real-time polarization difference sensing, with at least one body having two faces that isolate two orthogonal planes of information from a common stimulus input in series, with a first of the two faces isolating a first plane of information and a second of the two faces isolating a second plane of information which is orthogonal to the first plane.
1. A method of real-time polarization difference sensing, the method comprising the steps of:
directing a common stimulus input containing multiple differing planes of linear polarization along a linear input signal path;
placing two faces that isolate two orthogonal planes of information from the common stimulus input in series along the linear input signal path, with a first of the two faces reflecting a first plane of information having a first linear polarization of the common stimulus input with a transmission portion of the common stimulus input passing through the first of the two faces and through either an air gap or a prism medium directly onto a second of the faces, so as to maintain isolation and separation of polarization components, the second of the two faces reflecting a second plane of information having a second linear polarization which is orthogonal to the first plane of information, with the transmission portion of the common stimulus input passing through the second of the two faces;
capturing information from the first plane of information with a first sensor for a useful purpose; and
capturing information from the second plane of information with a second sensor for a useful purpose
determining a real-time polarization difference by subtracting one of the first plane of information or the second plane of information from the other.
2. The method of claim 1 , further comprising the step of passing a remainder of the common stimulus input along a linear input signal path.
3. The method of claim 2 , further including a step of reflecting a return signal off the first of the two faces and back parallel to the signal path of the common stimulus input.
4. The method of claim 1 , further comprising the step of using an electro-magnetic radiation as the common stimulus input, and the information captured from the first plane of information and the second plane of information being utilized to form images from electro-magnetic radiation passing from external objects along the linear signal path to the first of the two faces.
5. The method of claim 4 , further comprising the step of selecting the common stimulus input from one of a visible portion, an infrared portion or an ultraviolet portion of the electro-magnetic radiation.
6. The method of claim 4 , further comprising the steps of forming the first of the two faces on a first beam splitter cube and forming the second of the two faces on a second beam splitter cube.