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A computer-controlled Mueller matrix polarimeter with dual rotating retarders is described. Bulk properties of optical materials are determined by controlling the input-polarization state . A computer-controlled Mueller matrix polarimeter with dual rotating retarders is described. Bulk properties of optical materials are determined by controlling the input .

A computer-controlled Mueller matrix polarimeter with dual rotating retarders is described. Bulk properties of optical materials are determined by controlling the input . We propose a complete Mueller matrix polarimeter using dual photoelastic modulators and rotating half wave plates. The complete Mueller matrix of a sample is obtained .In order to measure how a system transforms the polarization state of light, we can measure the system’s Mueller Matrix. There are a host of different methods by which we can do so. In this . 1. Introduction. Mueller-matrix (Mm) scatterometers are of increasing interest for their ability to fully characterize the polarimetric behavior of samples [ 1 – 7 ]. The polarimetric .

Optimization of a dual

The present study proposes a high-performance Mueller matrix polarimeter based on two rotating retarders for determining the glucose concentration in aqueous solutions. In . We present a new calibration method to minimize the errors due to non-ideal retarders of a dual rotating Mueller matrix polarimeter. To increase the accuracy of the dual . A computer-controlled Mueller matrix polarimeter with dual rotating retarders is described. Bulk properties of optical materials are determined by controlling the input .

Compared with MMPs based on PEM and LCR, a dual-rotating-retarder Mueller matrix polarimeter (DRRMMP) has a popular configuration due to its great potential for .Tips for preparing a search: Keep it simple - don't use too many different parameters. Separate search groups with parentheses and Booleans. Note the Boolean sign must be in upper-case. The dual-rotating-retarder configuration is one of the most common forms of the Mueller matrix polarimeter. I perform an optimization of this polarimeter configuration by minimizing the condition number of the system data reduction matrix. I find the optimum retardance for the rotating retarders to .We previously developed a Mueller matrix microscope by combining a dual-rotating-retarder device with a commercial microscope, which holds promise for pathologic diagnosis applications. In practical applications, the signals to be .

Optimization of a dual

In order to increase the accuracy of a polarimeter it is necessary to compensate the errors caused by some of the components used. In dual rotating retarder Mueller matrix measurement method, the systematic errors can be caused due to the retardance and diattenuation properties of the components, non-uniform rotation of retarders stage, intensity . It is found that (1) estimation variances on each element of the Mueller matrix are heavily dependent on the retardances of the retarders and inversely proportional to the number of measurements; (2) for Gaussian noise, estimation variances are independent of rotating frequency ratio and dual 130.18° retardances can minimize the total variance . The dual-rotating-retarder configuration is one of the most common forms of the Mueller matrix polarimeter. I perform an optimization of this polarimeter configuration by minimizing the condition .

A computer-controlled Mueller matrix polarimeter with dual rotating retarders is described. Bulk properties of optical materials are determined by controlling the input-polarization state and measuring the output-polarization state.A computer-controlled Mueller matrix polarimeter with dual rotating retarders is described. Bulk properties of optical materials are determined by controlling the input-polarization state and measuring the output-polarization state. The Mueller matrix of a sample is obtained from polarimetric measurements, and polarization properties, i.e., diattenuation and retardance as .

Abstract A calibration algorithm for the Mueller matrix dual-rotating retarder polarimeter is presented. The Mueller matrix dual-rotating retarder polarimeter is composed by two rotating retarders and two fixed polarizers with the final purpose of retrieving the polarization properties of a sample. Even algorithms to calibrate

The dual rotating retarder Mueller matrix polarimeter [6,7,8] is the most commonly used polarimeter architecture for studying the complete polarimetric response of a sample. Another type of Mueller matrix polarimeter using liquid crystal modulators has been analyzed by De Martino et al. [ 9 ]. A dual vortex retarder Mueller matrix ellipsometer has been proposed based on the spatial modulation in both PSG and PSA. . Mueller matrix dual-rotating retarder polarimeter. Appl Opt, 31 (31) (1992), pp. 6676-6683. View in Scopus .An optimization of the dual-rotating-retarder configuration of the Mueller matrix polarimeter by minimizing the condition number of the system data reduction matrix finds the optimum retardance for the rotating retarders to be 127 degrees. The dual-rotating-retarder configuration is one of the most common forms of the Mueller matrix polarimeter. I perform .

An optimization of the dual-rotating-retarder configuration of the Mueller matrix polarimeter by minimizing the condition number of the system data reduction matrix finds the optimum retardance for the rotating retarders to be 127 degrees. The dual rotating retarder polarimeter, Fig. 47.1, consists of a polarization state generator (PSG) and a polarization state analyzer (PSA), each composed by a fixed polarizer (M P, M A) and a rotating retarder (M R (θ), M R (5θ) respectively.When the retarder of the PSA and the PSG rotates with an angular velocity 5:1, its output signal generates 12 harmonic . We previously developed a Mueller matrix microscope by combining a dual-rotating-retarder device with a commercial microscope, which holds promise for pathologic diagnosis applications. In practical applications, the signals to be measured are sensitive to systematic errors, and the measurement accuracy and the instrument calibration affect the .Dual-rotating retarder polarimeters constitute a family of well-known instruments that are used today in a great variety of scientific and industrial contexts. In this work, the periodic intensity signal containing the information of all sixteen .

and other biomedical applications [, 5]. The dual rotat4 - ing retarder Mueller matrix polarimeter [–8] is the most 6 commonly used polarimeter architecture for studying the complete polarimetric response of a sample. Another type of Mueller matrix polarimeter using liquid crystal modula-tors has been analyzed by De Martino et al. []. Jellison 9A method for the correction of systematic errors generated by large orientational and retardance errors in the polarization optics in the dual rotating retarder polarimeter is presented. Small orientational and retardance errors (<1°) can lead to large errors in the measured Mueller matrix (> 10% in some matrix elements). Goldstein D H. Mueller matrix dual-rotating retarder polarimeter. Appl Opt, 1992, 31: 6676–6683. Article Google Scholar Collins R W, Koh J. Dual rotating-compensator multichannel ellipsometer: Instrument design for real-time Mueller matrix spectroscopy of surfaces and films. J Opt Soc Am A, 1999, 16: 1997–2006 Estimation variance of dual-rotating-retarder Mueller matrix polarimeter in the presence of Gaussian thermal noise and poisson shot noise Naicheng Quan1,2,4, Chunmin Zhang3,4, Tingkui Mu3, Siyuan Li2 and Caiyin You1 1School of Materials Science and Engineering, Xi ’an University of Technology, Xi an 710048, People s Republic of China

[11] Compain E, Poirier S and Drevillon 1999 General and self-consistent method for the calibration of polarization modulators, polarimeters, and Mueller-matrix ellipsometers Appl. Opt. 38 3490–502. Crossref Google Scholar [12] Smith M 2002 Optimization of a dual-rotating-retarder Mueller matrix polarimeter Appl. Opt. 41 2488–93. Crossref . Tips for preparing a search: Keep it simple - don't use too many different parameters. Separate search groups with parentheses and Booleans. Note the Boolean sign must be in upper-case.

One the most successful polarimeters is the dual rotating retarder polarimeter ( DRR ), invented by Azzam in 1978. This system is composed of two polarizer and retarder pairs, and is able to reconstruct the Mueller matrix of an object inserted in between the two polarizing pairs via an angular modulation of the retarders. Fig. 2 shows the five systematic errors identified by Chenault et al. [5] for a dual-rotator Mueller matrix polarimeter, namely three misalignments of the rotating retarders and second polarizer relative to the first retarder (i.e., ϵ 3, ϵ 4 and ⁢ ϵ 5, respectively) and two retardance errors of the rotating quarter-wave plates (i.e., δ 1 .

Mueller matrix dual

Tips for preparing a search: Keep it simple - don't use too many different parameters. Separate search groups with parentheses and Booleans. Note the Boolean sign must be in upper-case. Since a measurement of the bidirectional scatter distribution function (BSDF) of a material is proportional to the intensity of the scattered light, a BSDF measurement system with the addition of a dual rotating retarder polarimeter can be used to calculate the Mueller matrix of a scatterer. One adv .

An optimization of the dual-rotating-retarder configuration of the Mueller matrix polarimeter by minimizing the condition number of the system data reduction matrix finds the optimum retardance for the rotating retarders to be 127 degrees. Expand

Implementation of a complete Mueller matrix polarimeter using

Estimation variance of dual

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