Terahertz difference frequency source remote active detection system

An active detection, terahertz technology, applied in radio wave measurement systems, measurement devices, instruments, etc., can solve the problems of inability to extend to high-frequency frequency bands, and the working frequency band is limited to the low-frequency range (below 1THz, etc.) The effect of high noise ratio and wide operating frequency band

Pending Publication Date: 2017-05-24
SHANGHAI INST OF TECHNICAL PHYSICS - CHINESE ACAD OF SCI
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Problems solved by technology

Regarding terahertz long-distance detection technology, it is basically still in the initial research stage at present, mainly using electronic frequency-multiplied terahertz radiation sources as active emission sources (such as the MMAOP architecture patented for terahertz radar and communication systems, patent number: CN201410094418 .3; a ground terahertz radar system for cloud measurement, application number: CN201510040930.4), but the effective working frequency band of this type of terahertz radiation source is limited to the low frequency range (below 1THz), and cannot be extended to the high frequency band ( 1THz or more)

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  • Terahertz difference frequency source remote active detection system

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Embodiment Construction

[0011] In combination with the accompanying drawings, the specific implementation of a terahertz difference frequency source remote active detection system of the present invention is described as follows:

[0012] The present invention uses a 1064nm laser 1 as the main pumping source of the terahertz difference frequency source, specifically a pulsed Q-switched Nd:YAG laser with an operating frequency of 10 Hz, a pulse width of 8 ns, and a line width of 0.003 cm -1 Another beam of pump light adopts the optical parametric oscillator 3 generated by the triple frequency beam pumped by the 1064nm laser, which has a wide band wavelength tuning range (400-1700nm), and its radiation wavelength is continuously adjustable, and the pulse width is 4ns, narrow line width (0.075cm line width -1 ), and high radiation power (up to 150mW near 1070nm) and other advantages. After the 1064nm pump beam passes through the first half-wave plate 2, it is vertically polarized and incident on the po...

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Abstract

The present invention discloses a terahertz difference frequency source remote active detection system. The system comprises a high-power 1064nm laser, an optical parametric oscillator, a beam delay line, half wave plates, a polarizing beam splitter prism, a gallium selenide crystal, terahertz lenses, a terahertz reflector and a terahertz detector. According to the terahertz difference frequency source remote active detection system of the invention, a high-power terahertz difference frequency source radiation technique is adopted, the quasi-parallel emission-echo focusing technique of the terahertz lens group is used in combination, and therefore, the active detection of the terahertz reflected / scattered signals of a long-distance target can be realized. The terahertz difference frequency source remote active detection system of the invention has the advantages of wide coverage band, high frequency band compatibility, simple structure, high signal-to-noise ratio, long detection distance and the like, and can work under room temperature.

Description

technical field [0001] The invention discloses a long-distance active detection system for a terahertz difference frequency source. The system utilizes a high-power optical terahertz difference frequency radiation source and lens assembly optical means to realize the active detection of a long-distance terahertz target. Background technique [0002] Terahertz wave, as an electromagnetic spectrum resource that has not been fully developed by human beings, is different from infrared and millimeter waves. It has unique spectral characteristics, which are embodied in its low photon energy and safety; it has large bandwidth and is convenient for large-capacity high-definition real-time communication. ; For the penetration of nonpolar molecules, it can perform terahertz perspective imaging; it has fingerprint absorption characteristics for many substances, and can be used for material composition calibration. Terahertz technology has become one of the most important key technologi...

Claims

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Application Information

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IPC IPC(8): G01S17/02G01S7/481
CPCG01S7/481G01S17/02Y02P70/50
Inventor 黄志明黄敬国张娟杨秋杰李高芳周炜曲越姚娘娟张飞褚君浩
Owner SHANGHAI INST OF TECHNICAL PHYSICS - CHINESE ACAD OF SCI
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