Phase-controlled polarization modulators
Author(s) -
David T. Chuss,
Edward J. Wollack,
Giles Novak,
G. Pisano,
Joseph R. Eimer,
S. H. Moseley,
M. Krejny,
K. U-Yen
Publication year - 2012
Publication title -
proceedings of spie, the international society for optical engineering/proceedings of spie
Language(s) - English
Resource type - Conference proceedings
SCImago Journal Rank - 0.192
H-Index - 176
eISSN - 1996-756X
pISSN - 0277-786X
DOI - 10.1117/12.925214
Subject(s) - polarization (electrochemistry) , optics , orthogonal polarization spectral imaging , stokes parameters , phase modulation , polarization rotator , physics , linear polarization , group delay and phase delay , circular polarization , radial polarization , computer science , telecommunications , phase noise , scattering , microstrip , birefringence , laser , chemistry , bandwidth (computing) , laser beam quality , laser beams
We report technology development of millimeter/submillimeter polarization modulators that operate by introducing a variable, controlled phase delay between two orthogonal polarization states. The variable-delay polarization modulator (VPM) operates via the introduction of a variable phase delay between two linear orthogonal polarization states, resulting in a variable mapping of a single linear polarization into a combination of that Stokes parameter and circular (Stokes V) polarization. Characterization of a prototype VPM is presented at 350 and 3000 microns. We also describe a modulator in which a variable phase delay is introduced between right- and left- circular polarization states. In this architecture, linear polarization is fully modulated. Each of these devices consists of a polarization diplexer parallel to and in front of a movable mirror. Modulation involves sub-wavelength translations of the mirror that change the magnitude of the phase delay.
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