Measuring device and method of light scattering particles
A measuring device, a technology of light scattering, applied in the direction of measuring device, particle and sedimentation analysis, particle size analysis, etc., can solve problems such as multiple reflection interference
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Embodiment 1
[0051] like Figure 4 As shown, the divergent beam module 10 includes a laser 1, a first lens 2, a pinhole stop 3 and a second lens 4, and the laser beam output by the laser 1 passes through the first lens 2, the pinhole stop 3 and the second lens in sequence The second lens 4 expands the beam to form a convergent Gaussian beam, and the convergent Gaussian beam passes through the beam waist, that is, the center A of the beam, and becomes divergent light.
[0052] Selecting the focal lengths of the first lens 2 and the second lens 4 and adjusting their positions can form divergent light beams with different opening angles, and the pinhole diaphragm 3 acts as a spatial filter to remove stray light.
Embodiment 2
[0054] like Figure 5 As shown, the divergent beam module 10 includes a monochromatic point light source 11, a reflective paraboloid 12 and a beam limiting diaphragm 13 and a small aperture filter diaphragm 14 arranged in sequence behind the monochromatic point light source. The monochromatic light source 11 is located on the reflective paraboloid 12 At one focus of the monochromatic point light source 11, the light emitted by the monochromatic point light source 11 is reflected by the reflective parabola 12 and then converges on the other focus of the parabola to form a divergent beam. This focus is the beam center A of the divergent beam. The small hole filter diaphragm 14 is set On the beam center of the diverging beam, the beam limiting diaphragm 13 determines the opening angle of the diverging beam, and the pinhole filtering diaphragm 14 filters out stray light.
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