Frequency tuning method for TeraHertz parameter oscillator

A technology of oscillator frequency and terahertz, applied in the direction of instruments, nonlinear optics, optics, etc., can solve the problems of increasing reflected pump light, unfavorable terahertz low-frequency direction tuning, and affecting the effective coupling output of terahertz waves, etc., to achieve Extended frequency tuning range and high tuning accuracy

Inactive Publication Date: 2009-12-30
HUAZHONG UNIV OF SCI & TECH
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Problems solved by technology

[0006] 2. Although the low-frequency terahertz wave can be obtained by reducing the angle between the pump light and the TPO cavity axis, a small angle will cause the spatial distribution of the pump light and the generated Stokes light to be too tight in the long distance of the limited cavity. Not only is it not conducive to tuning towards the low frequency of terahertz, but it also increases the possibility of pump light reflected from the TPO output mirror to the terahertz wave silicon coupling prism, which will excite a large number of free electrons on the silicon coupling prism, thereby Seriously affect the effective coupling output of terahertz waves;
[0007] 3. The incident angle of the pump light is changed mechanically, so that the tuning accuracy of this technology still needs to be improved

Method used

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  • Frequency tuning method for TeraHertz parameter oscillator
  • Frequency tuning method for TeraHertz parameter oscillator
  • Frequency tuning method for TeraHertz parameter oscillator

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Embodiment

[0022] The pumping source of the TPO device can be an optical parametric oscillator based on a BBO crystal, a titanium-doped sapphire pulse tunable laser, a pulsed dye laser, etc., preferably an optical parametric oscillator based on a BBO crystal.

[0023] Such as figure 2 As shown, the optical parametric oscillator 2 composed of BBO crystals can be pumped by the frequency tripled optical output of the electro-optic Q-switched pulsed Nd:YAG laser 1, and the parametric optical output with a continuous tuning range of 710nm to 1500nm can be obtained, and the polarization direction Working substance with TPO MgO:LiNbO 3 The Z-axis directions of the crystals 7 are the same. The continuously tunable pump light is narrowed by using the telescope narrowing system 3 to increase its energy density.

[0024] The TPO device consists of a right-angled trihedral corner cube prism 4, and the working substance MgO:LiNbO 3 The crystal 7 and the output mirror 9 are composed, which are col...

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Abstract

The invention provides a frequency tuning method for a TeraHertz parameter oscillator, which can realize high precision continuous tuning output of coherent narrow band TeraHertz by continuously changing pumping wavelength of the TeraHertz parameter oscillator without changing the incident angle of the pumping light. The invention has high frequency tuning precision (in particular in the long wavelength part), can overcome the change of characteristic of TeraHertz parameter oscillator caused by the change in the action area of the triple waves, can obviously expand frequency tuning scope of the TeraHertz parameter oscillator together with the angle tuning technology, and is hopeful to reach the low frequency area far smaller than 1THz which is hard to reach by singly using the angle tuning technology. Based on the tuning technology, the TeraHertz parameter oscillator can be widely used in TeraHertz optoelectronic technical fields such as medical diagnosis, fine spectrum analysis, bio-medical imaging, TeraHertz communication and the like.

Description

technical field [0001] The invention relates to the field of terahertz wave parametric oscillators, in particular to a frequency tuning method for terahertz wave parametric oscillators. Background technique [0002] Terahertz waves refer to electromagnetic waves with frequencies in the range of 0.1-10THz (1THz=10 12 Hz), its wave band is between millimeter wave and far infrared light in the electromagnetic spectrum. This band is an electromagnetic radiation area that has great scientific research value but has not yet been fully researched and developed. Since the emission, reflection and transmission spectra of matter in the terahertz wave band contain rich physical and chemical information, and terahertz wave radiation has the characteristics of low energy and high penetration, it is widely used in physics, chemistry, astronomy, life, etc. Basic research fields such as science and medical science, as well as applied research fields such as safety inspection, medical imag...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G02F1/39
Inventor 孙博刘劲松姚建铨
Owner HUAZHONG UNIV OF SCI & TECH
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