In this thesis a novel and versatile phase modulator is proposed, which is based on the dual transverse electro-optic effect. The modulator is compatible with distinct interferometric systems. A linearly time-varying phase shift is generated between the interfering waves. To demonstrate the feasibility and compatibility of the modulator, three typical representatives of interferometric systems are configured, namely an interferometer, a holography system, and a differential microscope. The physical principle and the experiment verification are demonstrated in detail.
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In this thesis a novel and versatile phase modulator is proposed, which is based on the dual transverse electro-optic effect. The modulator is compatible with distinct interferometric systems. A linearly time-varying phase shift is generated between the interfering waves. To demonstrate the feasibility and compatibility of the modulator, three typical representatives of interferometric systems are configured, namely an interferometer, a holography system, and a differential microscope. The physi...
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