Device for generating multi-wavelength stimulated raman laser

A multi-wavelength, laser technology, applied in Raman scattering, optics, nonlinear optics, etc., can solve the problems of inability to provide ozone differential absorption lidar wavelength pairs, difficult multi-wavelength beams, and few Raman laser wavelengths, etc. Simplicity, reduced manufacturing and operating costs, and improved accuracy

Inactive Publication Date: 2013-07-03
ANHUI INST OF OPTICS & FINE MECHANICS - CHINESE ACAD OF SCI
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Problems solved by technology

However, although this Raman tube optical path device has the advantages of both the length of the Raman tube and the short optical path of the Raman tube, it also has the disadvantage that the Raman tube is only filled with one kind of active gas, and the wavelength of the stimulated Raman laser generated is relatively short. However, it cannot provide the

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  • Device for generating multi-wavelength stimulated raman laser

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Embodiment Construction

[0012] see figure 1 A frequency multiplier 3 , a focusing lens 4 , a Raman tube 5 and a collimator 6 are sequentially placed on the output optical path 2 of the laser 1 . in,

[0013] Laser 1 is a Nd:YAG laser with an output wavelength of 1064nm and a pulse energy of 150-250mJ; the selected pulse energy is 200mJ and the pulse frequency is 20Hz.

[0014] The frequency doubler 3 is a general-purpose nonlinear crystal, and now two nonlinear crystals are selected and packaged in a sealed box.

[0015] The focal length of focusing lens 4 can be 30~60cm; Now choose to be 30cm.

[0016] The Raman tube 5 is filled with a mixed gas with a pressure of 1.2 to 3.4 MPa. The mixed gas is composed of deuterium, hydrogen and helium, and the ratio between them is 0.8 to 1.2: 0.23 to 0.27: 0.29 to 0.33; now select The pressure of the mixed gas is 2.5 MPa, and the ratio of deuterium, hydrogen and helium is 1:0.25:0.31.

[0017] Collimator 6 is made up of concave lens 61 and convex-concave le...

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Abstract

The invention discloses a device for generating multi-wavelength stimulated raman laser, which comprises an optical maser (1), and a focus lens (4), a raman pipe (5) and a collimation component (6) all arranged on an output laser path (2) of the optical maser, and is characterized in that a frequency multiplier (3) is arranged on the laser path between the optical maser (1) and the focus lens (4); mixed gas with air pressure ranging from 1.2 MPa to 3.4 MPa is filled into the raman pipe (5), and comprises deuterium gas, hydrogen and helium; the ratio of the deuterium gas, the hydrogen and the helium is (0.8-1.2) : (0.23-0.27) : (0.29-0.33); the focal distance of the focus lens (4) is from 30 cm to 60 cm; and the collimation component (6) comprises a concave lens (61) and a convex-concave lens (62) with the same optical axis, and the focal distance of the concave lens (61) is from minus 30 cm to 60 cm and the focal distance of the convex-concave lens (62) is from 20 cm to 30 cm. The device can not only directly provide wavelength pairs required by an ozone differential absorption lidar, but also can be independently used as a light emitting source of the lidar, and can emit multi-wavelength differential laser beams with the same laser beam at the same time.

Description

technical field [0001] The invention relates to a device for stimulating Raman light, in particular to a device for generating multi-wavelength stimulated Raman light. Background technique [0002] At present, in order to detect the spatial distribution profile of pollutant gases in the atmosphere, the method of differential absorption lidar is often used. The laser light source required by differential absorption lidar is usually limited by the laser medium, and its output wavelength is limited. In order to expand the output wavelength of the laser, people often use the stimulated Raman effect to generate a stimulated Raman laser with the same properties as the laser, as disclosed in the Chinese utility model patent specification CN 2684189Y published on March 9, 2005. A "Raman tube optical path device for vehicle-mounted pollution measurement lidar". The Raman tube optical device of the laser radar mentioned in this patent specification is composed of a Raman tube filled...

Claims

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Application Information

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IPC IPC(8): G01N21/65H01S3/16G02F1/35
Inventor 曹开法邵石生胡顺星
Owner ANHUI INST OF OPTICS & FINE MECHANICS - CHINESE ACAD OF SCI
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