Littrow-structure tunable external-cavity laser and mode-hopping-free sweep-frequency regulation method thereof
An adjustment method and laser technology, applied in the field of laser tuning, can solve problems such as the inability to achieve large-scale mode-hop-free tuning, and achieve the effect of large-scale mode-hop-free tuning
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specific Embodiment approach 1
[0024] Specific implementation mode one: the following combination figure 1 Describe this embodiment, the Littrow structure tunable external cavity laser described in this embodiment includes a semiconductor laser 1, it also includes a liquid crystal spatial light modulator 2 and a blazed grating 3,
[0025] The laser beam emitted by the semiconductor laser 1 is incident on the blazed grating 3 after passing through the liquid crystal spatial light modulator 2 , and the semiconductor laser 1 and the liquid crystal spatial light modulator 2 are arranged in sequence on the optical axis of the first-order diffraction of the blazed grating 3 .
specific Embodiment approach 2
[0026] Specific implementation mode two: the following combination figure 1 Describe this implementation mode, this implementation mode is based on the Littrow structure tunable external cavity laser described in the first embodiment mode hopping frequency sweep adjustment method,
[0027] The laser beam emitted by the semiconductor laser 1 is incident on the blazed grating 3 after passing through the liquid crystal spatial light modulator 2. Resonance is formed between the cavities, and finally the zero-order output of the blazed grating 3 is emitted;
[0028] Rotate the blazed grating 3 around the axis point O, and change the voltage of the liquid crystal spatial light modulator 2 at the same time so that the refractive index n(θ) of the liquid crystal spatial light modulator 2 is:
[0029] n ( θ ) = 2 dq sin θ - ...
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