High-Precision Frequency-Controlled Optical Phase Shifter with Acousto Optic Devices

Fuente: arXiv
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Hauptverfasser: Esquivel-Ramírez, Eduardo, Uhthoff-Rodríguez, Leonardo, Alonso-Torres, Edgar Giovanni, Hernández-López, Alberto, Gardea-Flores, Carlos, Paris-Mandoki, Asaf
Format: Preprint
Veröffentlicht: 2023
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author Esquivel-Ramírez, Eduardo
Uhthoff-Rodríguez, Leonardo
Alonso-Torres, Edgar Giovanni
Hernández-López, Alberto
Gardea-Flores, Carlos
Paris-Mandoki, Asaf
author_facet Esquivel-Ramírez, Eduardo
Uhthoff-Rodríguez, Leonardo
Alonso-Torres, Edgar Giovanni
Hernández-López, Alberto
Gardea-Flores, Carlos
Paris-Mandoki, Asaf
contents A fundamental parameter to determine how electromagnetic waves interfere is their relative phase. Therefore, achieving a fine control over it enables a wide range of interferometric applications. Existing phase control methods rely on modifying the optical path length by either changing the path followed by the light or by altering the thickness or index of refraction of an optical element in the setup. In this work we present a novel method, based on acousto-optic modulators (AOM), which allows adjusting the phase by shifting the frequency of the light in a segment of its path. Since the amount of phase-shift depends on the length of the segment, an optical fiber is used to realize a \boldmath$2π$ shift. Two experimental implementations are described which deal with different sources of phase fluctuations. The first addresses fluctuations resulting from the optical fiber while the second also tackles unwanted variations originating from the AOMs.
format Preprint
id arxiv_https___arxiv_org_abs_2312_03910
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle High-Precision Frequency-Controlled Optical Phase Shifter with Acousto Optic Devices
Esquivel-Ramírez, Eduardo
Uhthoff-Rodríguez, Leonardo
Alonso-Torres, Edgar Giovanni
Hernández-López, Alberto
Gardea-Flores, Carlos
Paris-Mandoki, Asaf
Optics
A fundamental parameter to determine how electromagnetic waves interfere is their relative phase. Therefore, achieving a fine control over it enables a wide range of interferometric applications. Existing phase control methods rely on modifying the optical path length by either changing the path followed by the light or by altering the thickness or index of refraction of an optical element in the setup. In this work we present a novel method, based on acousto-optic modulators (AOM), which allows adjusting the phase by shifting the frequency of the light in a segment of its path. Since the amount of phase-shift depends on the length of the segment, an optical fiber is used to realize a \boldmath$2π$ shift. Two experimental implementations are described which deal with different sources of phase fluctuations. The first addresses fluctuations resulting from the optical fiber while the second also tackles unwanted variations originating from the AOMs.
title High-Precision Frequency-Controlled Optical Phase Shifter with Acousto Optic Devices
topic Optics
url https://arxiv.org/abs/2312.03910