Mueller matrix spectroscopic ellipsometry

Author:

Hilfiker James N.1ORCID,Hong Nina1,Schoeche Stefan1

Affiliation:

1. J.A. Woollam Company , 311 South 7th St. , Lincoln , NE , 68508 , USA

Abstract

Abstract The Mueller matrix is a mathematical description of how light is altered by an optical element or a sample under study. It describes both intensity (irradiance) and polarization changes, including a reduction of the total polarization. Mueller matrix spectroscopic ellipsometry has gained recent popularity in the optics and semiconductor communities as an effective means to characterize complex sample structures and anisotropic materials. While this method is not new, its recent expansion to new fields has left many users with only a pedestrian understanding of the data they collect. This tutorial provides an overview of Mueller matrix spectroscopic ellipsometry with focus on practical aspects for those new to the technique.

Publisher

Walter de Gruyter GmbH

Subject

Instrumentation,Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference87 articles.

1. K. Jarrendahl and B. Kahr, in Hans Mueller (1900-1965), J.A.Woollam Co., Inc. Newsletter, 2011, pp. 8–9.

2. N. G. Parke, Matrix Optics, Ph.D. dissertation, Massachusetts Institute of Technology, Cambridge, Mass., 1948.

3. N. G. Parke, “Optical algebra,” J. Math. Phys., vol. 28, p. 131, 1949.

4. G. G. Stokes, “On the composition and resolution of streams of polarized light from different sources,” Trans. Cambridge Phil. Soc., vol. 9, p. 399, 1852.

5. C. Brosseau, “Polarization and coherence optics: historical perspective, status, and future directions,” in Progress in Optics, E. Wolf, Ed., Amsterdam, London, New York, Elsevier, 2009, pp. 149–208.

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