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Optical feedback characteristics in a dual-frequency laser during laser cavity tuning 被引量:2

Optical feedback characteristics in a dual-frequency laser during laser cavity tuning
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摘要 The optical feedback characteristics in a Zeeman-birefringence dual-frequency laser are studied during the laser cavity tuning in three different kinds of optical feedback conditions: (i) only //-light is fed back; (ii) only ⊥-light is fed back; (iii) both lights are fed back. A compact displacement sensor is designed using the experimental result that there is a nearly 90 degrees phase delay between the two lights' cosine optical feedback signals when both lights are fed back into the laser cavity. The priority order that the two lights' intensity curves appear can be used for direction discrimination. The resolution of the displacement sensor is at least 79 rim, and the sensor can discriminate the target's moving direction easily. The optical feedback characteristics in a Zeeman-birefringence dual-frequency laser are studied during the laser cavity tuning in three different kinds of optical feedback conditions: (i) only //-light is fed back; (ii) only ⊥-light is fed back; (iii) both lights are fed back. A compact displacement sensor is designed using the experimental result that there is a nearly 90 degrees phase delay between the two lights' cosine optical feedback signals when both lights are fed back into the laser cavity. The priority order that the two lights' intensity curves appear can be used for direction discrimination. The resolution of the displacement sensor is at least 79 rim, and the sensor can discriminate the target's moving direction easily.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2005年第10期1984-1989,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China (Grant No 60437030).
关键词 dual-frequency laser optical feedback SELF-MIXING displacement sensor dual-frequency laser, optical feedback, self-mixing, displacement sensor
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