Terahertz radiation source based on intracavity optical parameters and difference frequency effect
A terahertz radiation source and optical parameter technology, which is applied in masers, electrical components, circuits, etc., can solve the problems of terahertz wave output energy and low optical conversion efficiency, and achieve improved optical conversion efficiency, simple structure, The effect of improving utilization efficiency
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Embodiment approach 1
[0024] The technical solution of the present invention is to provide a terahertz radiation source based on the optical parameters of the cavity and the difference frequency effect, such as figure 1 As shown, including the pump light source, the pump light source is composed of plane mirror 1, KD * P crystal 2, polarizer 3, Nd:YAG laser pumping module pumping module 4, plane mirror 14. A harmonic mirror 8 for transmitting pump light and reflecting difference frequency light, a KTP crystal 9, a KTP crystal 10, and a periodically polarized crystal are sequentially arranged on the pump light optical path after the pump module 4 of the Nd:YAG laser pump module. 12. A parabolic mirror 11 and a parabolic mirror 13 are arranged near both ends of the periodically polarized crystal 12 on the optical path of the pump light, and the concave surfaces of the parabolic mirror 11 and the parabolic mirror 13 face the periodically polarized crystal 12 . All the above components are arranged be...
Embodiment approach 2
[0029] Such as figure 2 As shown, a periodically polarized crystal 6 is also arranged between the pump module 4 of the Nd:YAG laser pump module and the harmonic mirror 8, and a parabolic mirror is arranged near the two ends of the periodically polarized crystal 6 on the optical path of the pump light. 5 and the parabolic mirror 7, the concave surfaces of the parabolic mirror 5 and the parabolic mirror 7 face the periodically polarized crystal 6. The configuration of the rest of the terahertz radiation source in this embodiment is the same as that in the first embodiment.
[0030] The 1064nm pump light emitted by the pump light source excites the periodically polarized crystal 6 to generate terahertz waves and first-order Stokes light through optical parametric oscillation. Since the wavelengths of the first-order Stokes light and the pump light are very close, the first-order Stokes light generated from the periodically polarized crystal 6, like the pump light, will oscillat...
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